Antonín Opíchal – Relativistic Heavy Ion Collisions – Best Researcher Award

Mr. Antonín Opíchal - Relativistic Heavy Ion Collisions - Best Researcher Award

Nuclear Physics Institute CAS/ Placký University Olomouc - Czech Republic 

Author Profile

ORCID

🎓 Early Academic Pursuits

Mr. Antonín Opíchal embarked on his academic journey with a solid foundation in low-current electrotechnics at the Secondary Industrial School of Electrical Engineering in Olomouc, where he excelled in electronic computer systems. His passion for physics and process automation led him to pursue a Bachelor's degree in Instrument Physics at Palacký University, culminating in a thesis focused on process control and automation using the LOGO! system. Building upon this, he completed a Master's in Applied Physics, developing expertise in distributed systems and Siemens technologies. His academic rigor and dedication naturally progressed to a Ph.D. program in Applied Physics, focusing on advanced topics in experimental nuclear physics.

💼 Professional Endeavors

Mr. Opíchal's professional endeavors reflect his deep commitment to advancing nuclear and applied physics. From 2016 to 2022, he undertook a long-term collaborative assignment at the Joint Institute for Nuclear Research (JINR) in Dubna, Russia, as part of his Ph.D. program. During this tenure, he worked extensively on the MASHA experiment, focusing on mass spectrometry and laser spectroscopy of heavy and superheavy nuclides. Presently, he holds positions as a young researcher at Palacký University and the Nuclear Physics Institute under the Czech Academy of Sciences. His work includes nuclear spectroscopy, heavy ion reactions, and collaborations with leading experimental groups, such as GSI/FAIR Darmstadt, particularly in studying relativistic heavy ion collisions.

🔬 Contributions and Research Focus

Mr. Opíchal’s research contributions are centered around the physics of heavy ions and the application of advanced experimental techniques. His doctoral dissertation, MASHA Experiment Controlled by Embedded Controllers, bridges applied physics and automation, highlighting his interdisciplinary expertise. His work on relativistic heavy ion collisions aims to deepen our understanding of nuclear matter under extreme conditions. As an operator expert of the Electromagnetic Calorimeter, he has played a vital role in data acquisition and analysis for the HADES experiment at GSI/FAIR, significantly advancing studies in relativistic nuclear collisions.

🌍 Impact and Influence

The impact of Mr. Opíchal's work is evident in the advancements in experimental techniques for studying nuclear reactions and the properties of superheavy elements. His contributions to the MASHA experiment have provided valuable insights into the spectrometry and spectroscopy of heavy nuclides. His expertise in relativistic heavy ion collisions has positioned him as a key collaborator in international research projects, fostering innovation and cross-border scientific exchange.

🏆Academic Cites

Mr. Opíchal’s research outputs have been published in reputable scientific journals and conference proceedings, reflecting the scholarly recognition of his work. His contributions to studies on relativistic heavy ion collisions and nuclear spectroscopy have been cited by peers, underscoring the relevance of his findings in advancing nuclear physics. His collaborative efforts with institutions like GSI/FAIR further amplify the reach and influence of his work.

🌟 Legacy and Future Contributions

Mr. Antonín Opíchal’s legacy lies in his innovative approach to experimental physics and his contributions to the study of heavy and superheavy nuclides. His future endeavors are poised to further unravel the mysteries of nuclear matter through advanced techniques in spectroscopy and mass spectrometry. By fostering collaborations and mentoring the next generation of physicists, he is set to leave a lasting impact on the field of relativistic heavy ion collisions and nuclear research.

📝Relativistic Heavy Ion Collisions

Mr. Opíchal’s research on relativistic heavy ion collisions has significantly advanced our understanding of nuclear matter at high energies. His experimental contributions, particularly at GSI/FAIR, emphasize the importance of relativistic heavy ion collisions in exploring fundamental physics. The study of relativistic heavy ion collisions continues to shape his research trajectory and future innovations.

Notable Publication


📝Installation and Commissioning of the Electromagnetic Calorimeter in the HADES Experiment

Journal: Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment

Publication Date: February 2025

Authors: A. Opíchal, P. Kohout, A. Kohoutová, J. Kollarczyk, L. Krupa, A. Kugler, T. Galatyuk, M. Grunwald, A. Rost, P. Tlustý


📝Evaporation-Residue Cross Sections in Complete Fusion Reactions Leading to Hg and Rn Isotopes

Journal: Physical Review C

Publication Date: April 18, 2022

Authors: D. Kamas, A. Opichal, E. V. Chernysheva, S. N. Dmitriev, A. V. Gulyaev, A. V. Gulyaeva, M. Holik, J. Kliman, A. B. Komarov, L. Krupa, et al.


📝Mössbauer Spectrometer With Advanced Modulation of Gamma-Ray Energy Utilizing Real-Time Industrial Computer

Journal: IEEE Transactions on Nuclear Science

Publication Date: August 2021

Authors: Pavel Kohout, Lukas Kouril, Antonin Opichal, Alena Kohoutova, Jiri Pechousek


📝Study of Neutron-Rich Isotopes Near N=152 Shell Closure Using Timepix Type Detectors Integrated Into the Mass Separator MASHA

Journal: Journal of Instrumentation

Publication Date: February 6, 2020


📝Study of Production Stability of Radon and Mercury Isotopes in Complete Fusion Reactions at the Mass-Separator MASHA by “Solid Hot Catcher” Technique

Conference: 23rd International Scientific Conference of Young Scientists and Specialists (AYSS-2019)

Publication Year: 2019

DOI: 10.1063/1.5130114

Temitayo Omoyeni – Biopolymer – Research Excellence Achievement Award 

Mrs. Temitayo Omoyeni - Biopolymer - Research Excellence Achievement Award 

Cyprus International University - Cyprus

Author Profile

Scopus

🎓 Early Academic Pursuits

Mrs. Temitayo Omoyeni’s academic journey began with a strong foundation in physics and electronics, earning her B.Sc. from Osun State University, Oshogbo, Nigeria, in 2015. Her passion for scientific research led her to pursue advanced studies in bioengineering, obtaining an MSc in 2021 and subsequently enrolling in a Ph.D. program at Cyprus International University, Nicosia. Her early academic pursuits reflect a deep interest in the interdisciplinary application of engineering principles to biological systems.

💼 Professional Endeavors

Mrs. Omoyeni’s professional endeavors are marked by her diverse roles in academia and research. As a Research Assistant at Cyprus International University’s Faculty of Medicine, she has been instrumental in conducting experiments, maintaining laboratory equipment, and mentoring students. Her previous experience in the library department enhanced her expertise in resource management and data handling, which supports her ongoing research activities. Additionally, her tenure as a science teacher and intern at the University College Hospital in Ibadan laid the groundwork for her practical and instructional capabilities.

🔬 Contributions and Research Focus

Her current research focuses on biopolymers, leveraging her expertise in bioengineering to explore sustainable materials for biomedical applications. Her contributions extend to mentoring students in organic chemistry, where she emphasizes experimental safety and accuracy. Her active participation in laboratory management ensures high standards for experimental outcomes, particularly in studies involving biopolymers. Through interdisciplinary collaboration, Mrs. Omoyeni aims to innovate in areas such as diagnostic devices and biomedical materials.

🌍 Impact and Influence

Mrs. Omoyeni’s influence is evident in her multifaceted roles in academia and her impactful research. Her work in biopolymers addresses critical challenges in biomedical engineering, advancing knowledge and promoting sustainable practices. She has been recognized with scholarships for her contributions, such as the ACS Green Chemistry & Engineering Conference Virtual Scholarship in 2023 and a scholarship from the International Association of Advanced Materials in 2022, which further underscore her dedication to academic and professional excellence.

🏆Academic Cites

Mrs. Omoyeni’s research outputs contribute to the growing body of knowledge in bioengineering, particularly in the study of biopolymers and biomedical materials. Her work has been cited in various academic and professional contexts, highlighting her role in advancing sustainable and innovative solutions in medical engineering.

🌟 Legacy and Future Contributions

Mrs. Omoyeni’s legacy is rooted in her commitment to advancing bioengineering, particularly through the study and application of biopolymers. She envisions a future where her work contributes to groundbreaking innovations in sustainable medical devices and materials. Her role as a mentor and educator ensures that she leaves a lasting impact on the next generation of scientists and engineers. By continuing her research and academic contributions, Mrs. Omoyeni is poised to shape the future of bioengineering, driving progress in sustainable and practical biomedical solutions.

📝Notable Publication


📝Trends in Sustainable Chitosan-Based Hydrogel Technology for Circular Biomedical Engineering: A Review

Authors: Mishra, A., Omoyeni, T., Singh, P.K., Anandakumar, S., Tiwari, A.

Journal: International Journal of Biological Macromolecules

Year: 2024

Citations: 8


📝Biosorption of Dimethyl Phthalate from Aqueous Solution Using Yeast-Based Silver Nanoparticle

Authors: Omoyeni, T.M., Erkurt, H., Olaifa, J.T.

Journal: Water, Air, and Soil Pollution

Year: 2024

Citations: 0

Sara Abbasi – Micro Electro Mechanical Systems – Best Researcher Award

Mrs. Sara Abbasi - Micro Electro Mechanical Systems - Best Researcher Award 

Texas A&M University - United States 

Author Profile

Scopus

🎓 Early Academic Pursuits

Mrs. Sara Abbasi began her academic journey with a Bachelor of Science in Electrical and Electronics Engineering from K. N. Toosi University of Technology. Demonstrating early promise, she ranked within the top 1% of over 400,000 participants in Iran’s national university entrance exam. Her undergraduate thesis focused on designing and implementing a rehabilitation device for "Foot Drop" patients, showcasing her interest in biomedical engineering applications. Her academic excellence continued with her Master’s at Tarbiat Modares University, where she ranked among the top 1% in the entrance exam for the program.

💼 Professional Endeavors

Currently pursuing a Ph.D. in Kinesiology at Texas A&M University, Mrs. Abbasi’s research emphasizes the development of focused ultrasound stimulation protocols and designing innovative ultrasound transducers. Her Master’s research at Tarbiat Modares University explored cutting-edge topics such as the design and fabrication of Surface Acoustic Wave (SAW) devices for sperm cell manipulation. She also contributed to gait analysis and electrical muscle stimulation (EMS) research during her undergraduate tenure. Her expertise spans MEMS (Microelectromechanical Systems), acoustofluidics, particle manipulation, and cell biology applications.

🔬 Contributions and Research Focus

Mrs. Abbasi has made significant strides in MEMS-related research, particularly in acoustofluidics and bio-cell manipulation. Her work at the Nano Sensors and Detectors Laboratory (NSDL) at Tarbiat Modares University involved groundbreaking studies on SAW devices, underscoring her contributions to the intersection of electronics and biology. Now at Texas A&M University, her research explores ultrasound stimulation at the transducer design and behavioral levels, positioning her at the forefront of biomedical engineering advancements. Her undergraduate work on gait analysis and PCB design reflects her ability to bridge engineering and medical challenges effectively.

🌍 Impact and Influence

The impact of Mrs. Abbasi’s research is evident through her innovative projects and participation in key academic events. She played an integral role in the 25th Iranian Conference on Electrical Engineering, contributing to its success as part of the executive committee. Her work in MEMS technology and related domains has influenced peers and collaborators, fostering advancements in bioengineering and microelectronics.

🏆Academic Cites

Mrs. Abbasi’s work has been recognized in academic circles, with publications and citations that reflect her pioneering contributions to MEMS technology, acoustofluidics, and ultrasound stimulation. Her designs and methodologies in SAW device fabrication have become reference points for researchers in bio-cell manipulation.

🌟 Legacy and Future Contributions

Mrs. Abbasi’s legacy lies in her innovative approach to integrating MEMS technology with medical applications. Her Ph.D. research promises to revolutionize focused ultrasound stimulation protocols, potentially impacting rehabilitation and motor control therapies. Her work on Surface Acoustic Wave devices and MEMS technology is expected to inspire future advancements in bioengineering and precision medicine. As she continues her academic and professional journey, her contributions are poised to leave a lasting mark on both engineering and healthcare industries.

Micro Electro Mechanical Systems

Mrs. Abbasi’s expertise in MEMS technology is a cornerstone of her academic and research endeavors, influencing her work in cell manipulation and ultrasound transducer design. Her contributions to MEMS technology have driven advancements in SAW device fabrication and acoustofluidics. The future of MEMS technology in medical applications will undoubtedly benefit from her innovative research and dedication.

📝Notable Publication


📝ZnO-based Acoustofluidics: Droplet-based Particle Manipulation

Authors: Abbasi, S., Barahimi, B., Darbari, S., Moravvej-Farshi, M.K., Zabetian, M.

Conference: 2022 30th International Conference on Electrical Engineering (ICEE 2022)

Year: 2022

Citations: 1

Saleem Jabed Al Khayer – Heat and Mass transfer – Best Researcher Award 

Mr. Saleem Jabed Al Khayer - Heat and Mass transfer - Best Researcher Award 

Gauhati University - India

Author Profile

Google Scholar

🎓 Early Academic Pursuits

Mr. Saleem Jabed Al Khayer’s academic journey reflects a consistent commitment to excellence, beginning with his early education at Sakti Ashram HS & Voc. School, where he achieved an impressive 83.5% in the HSLC examination in 2014. His strong foundation in mathematics and sciences continued at Bajali College, where he excelled in the HS (Science) stream with a score of 72.4% in 2016. Driven by his passion for mathematics, he pursued a B.Sc. in Mathematics at Gauhati University, earning a commendable 78.0% in 2019. His academic achievements culminated with an M.Sc. in Mathematics from Arya Vidyapeeth College under Gauhati University, where he graduated with an outstanding 93.7% in 2021.

💼 Professional Endeavors

Mr. Saleem Jabed Al Khayer has demonstrated a keen interest in academia and research, focusing on applied mathematics, particularly in the domain of heat and mass transfer. His professional endeavors include extensive coursework, research projects, and active participation in seminars and workshops related to this area. As a dedicated scholar, he has laid the groundwork for contributing to advancements in mathematical modeling and its applications in physical processes.

🔬 Contributions and Research Focus

Mr. Al Khayer’s research interests revolve around heat and mass transfer, a crucial aspect of applied mathematics with extensive applications in engineering, environmental studies, and industrial processes. His work aims to develop mathematical models to understand and optimize the transfer phenomena in various systems. By integrating theoretical knowledge with practical applications, he seeks to address challenges in energy efficiency, thermal management, and material processing.

🌍 Impact and Influence

Through his rigorous academic performance and research focus, Mr. Al Khayer has established himself as a promising mathematician. His contributions to the field of heat and mass transfer have the potential to influence various scientific and engineering disciplines. By applying mathematical principles to solve real-world problems, he is poised to make a significant impact in areas such as renewable energy, industrial optimization, and environmental conservation.

🏆Academic Cites

Although at the early stages of his career, Mr. Al Khayer’s academic work demonstrates potential for high citation rates as he continues to publish in reputed journals. His deep understanding of heat and mass transfer positions him to contribute groundbreaking research that will be widely recognized and referenced within the academic community.

🌟 Legacy and Future Contributions

Mr. Saleem Jabed Al Khayer’s future contributions are expected to advance the field of applied mathematics, particularly in heat and mass transfer. His dedication to research and learning ensures a lasting impact on the academic and scientific community. As he progresses, his legacy will be defined by his innovative approaches, scholarly excellence, and ability to bridge the gap between theoretical mathematics and practical applications.

📝Heat and Mass Transfer

Mr. Al Khayer’s academic focus on heat and mass transfer underscores his commitment to solving complex mathematical problems with real-world implications. His innovative work in heat and mass transfer promises to contribute significantly to advancements in energy systems and material science. The field of heat and mass transfer will undoubtedly benefit from his ongoing research and expertise.

Notable Publication


📝Effect of Stratification and Joule Heating on MHD Dusty Viscoelastic Fluid Flow Through Inclined Channels in Porous Medium in Presence of Molecular Diffusivity

Authors: SJ Al Khayer, S Chakraborty

Journal: East European Journal of Physics

Year: 2024

Jeong Min Woo – Lightning Protection – Best Researcher Award 

Dr. Jeong Min Woo - Lightning Protection - Best Researcher Award 

Korea Electrotechnology Research Institute - South Korea 

Author Profile

Scopus

Google Scholar

🎓 Early Academic Pursuits

Dr. Jeong Min Woo’s academic journey began with a strong foundation in electronics, earning a B.Sc. degree from Kyungpook National University in South Korea. He continued his academic pursuits with an M.Sc. in Information and Communication Engineering and a Ph.D. in Electrical and Electronic Computer Engineering from the prestigious Gwangju Institute of Science and Technology, completing his studies in 2016. His early academic focus on electronics and communication engineering set the stage for his groundbreaking work in wireless power transfer and lightning protection technologies.

💼 Professional Endeavors

Currently serving as a Senior Researcher at the Korea Electrotechnology Research Institute, Dr. Woo has been actively involved in projects that address critical challenges in renewable energy and electromagnetic security. His professional endeavors include the development of a lightning protection platform for large-scale offshore wind farms, creating high-performance protection against high-power electromagnetic pulses, and designing the world’s largest 1,600 A-class High-Altitude Electromagnetic Pulse (HEMP) filter. These contributions underscore his leadership in advancing lightning protection and electromagnetic safety technologies.

🔬 Contributions and Research Focus

Dr. Woo’s research spans several cutting-edge areas, including wireless power transfer, metamaterials, compound semiconductor devices, static electric field sensors, and the analysis of high-voltage direct current (HVDC) electrical environmental effects. His work has significantly advanced the field of lightning protection, particularly in renewable energy applications such as wind turbines and high-rise structures. His expertise extends to high-power electromagnetic pulse protection and the environmental impact of HVDC systems, both of which are critical to modern electrical infrastructure.

🌍 Impact and Influence

Dr. Woo’s work has had a profound impact on both academic and industrial sectors. His research outputs, including 559 citations with an h-index of 11 and an i10-index of 13, reflect his influence in the scientific community. His collaborations with organizations like the Korea Electric Power Corporation (KEPCO) on HVDC transmission line projects and electromagnetic environmental impact assessments further demonstrate his role in shaping industry practices. His advancements in lightning protection have garnered widespread attention for their practical applications in military, renewable energy, and structural engineering.

🏆Academic Cites

Dr. Woo’s contributions to the field are well-documented and widely cited in academic literature. His pioneering work on lightning protection for wind turbine blades and high-rise structures is particularly notable, as it bridges theoretical research and practical implementation. His citation metrics underline his role as a thought leader in electromagnetic engineering and lightning protection technologies.

🌟 Legacy and Future Contributions

Dr. Woo’s legacy lies in his commitment to advancing electromagnetic safety and renewable energy technologies. His ongoing projects, such as the development of lightning protection measures for offshore wind farms and high-rise structures, promise to enhance the reliability and resilience of critical infrastructure. Looking ahead, Dr. Woo’s research is poised to further influence the fields of renewable energy and electromagnetic safety, solidifying his reputation as a pioneer in lightning protection and related technologies.

📝Lightning Protection

Dr. Woo’s expertise in lightning protection has led to the development of cutting-edge technologies for wind turbines, high-rise buildings, and military applications. His research into lightning protection continues to advance safety standards in renewable energy and infrastructure development. As a leader in lightning protection, his contributions are setting new benchmarks for the field.

Notable Publication


📝Microwave Power Limiter Having H-Shaped Slot Structure with Enhanced Plasma Discharge by Electrostatic Potential

Authors: Park, K.-J., Park, J.-H., Lee, W.-S., Woo, J.-M.

Journal: IEEE Access

Year: 2024

Citations: 0


📝Design and Analysis of an Adjustable Diode-Integrated Waveguide-Based Electromagnetic Pulse Limiter for Microwave Receiver

Authors: Woo, J.-M., Ho Kim, J., Won, J.-H., Yu, D.

Journal: IEEE Access

Year: 2024

Citations: 1


📝Plasma-Discharge-Integrated Slot Structure for Microwave Power Limiter

Authors: Woo, J.M., Ju, M.N., Lee, J.-B.

Journal: Scientific Reports

Year: 2023

Citations: 2


📝Extendable Array Rectenna for a Microwave Wireless Power Transfer System

Authors: Woo, J.-M., Lim, W., Bae, J., Yi, S.-H., Yang, Y.

Journal: IEEE Access

Year: 2021

Citations: 8


📝Long-Term Evaluation of HVDC Transmission Line Audible Noise and Its Correlation with Background Noise

Authors: Shin, K.Y., Oh, J.A., Kwon, G.M., Ju, M.N., Woo, J.M.

Journal: AIP Advances

Year: 2019

Citations: 8


📝High Volumetric Energy Density Hybrid Supercapacitors Based on Reduced Graphene Oxide Scrolls

Authors: Rani, J.R., Thangavel, R., Oh, S.-I., Lee, Y.-S., Jang, J.-H.

Journal: ACS Applied Materials and Interfaces

Year: 2017

Citations: 47

Natacha Teissier – Medical Imaging – Best Researcher Award

Prof. Natacha Teissier - Medical Imaging - Best Researcher Award 

Robert Debré Hospital Inserm U1141 - France

Author Profile

Scopus

🎓 Early Academic Pursuits

Prof. Natacha Teissier’s academic journey is marked by her exceptional dedication to medical sciences, beginning with her early studies at Faculté Paris-Ouest, Paris V. Excelling in foundational medical training, she completed her Concours de PCEM1 in 1993, followed by obtaining advanced certifications such as the Certificat de Maîtrise C1 in Anatomy and Organogenesis (1995) and C2 in Anatomy, Imaging, and Morphogenesis (2002). Her early achievements also include a DEA in Neurosciences (2002), where she explored groundbreaking research under the guidance of Prof. Shig Kuwada at the University of Connecticut. This strong educational foundation propelled her towards becoming an expert in otorhinolaryngology and medical imaging.

💼 Professional Endeavors

Prof. Teissier has had a distinguished career spanning multiple roles within the French healthcare system. From her tenure as an Interne des Hôpitaux de Paris (1998–2004) to her progression as a Chef de Clinique Assistant (CCA) at Hôpital Robert Debré (2004–2007), she demonstrated exceptional clinical and research acumen. She later served as a Practitioner Hospitalier (PH) from 2008 to 2016 before being appointed Professeur des Universités – Praticien Hospitalier (PUPH) in 2016 at the same hospital. Throughout these roles, she specialized in pediatric otorhinolaryngology, focusing on complex cases and integrating advanced techniques in medical imaging for diagnostics and treatment planning.

🔬 Contributions and Research Focus

Prof. Teissier's research contributions extend to both clinical and fundamental sciences, emphasizing the use of medical imaging technologies. She has been pivotal in exploring neuroprotection in developing brains as part of INSERM U1141's NeuroDiderot project. Her work with the PROTECT (Promoting Research Oriented Towards Early CNS Therapies) initiative at Université Paris Diderot reflects her dedication to advancing imaging methods for early diagnostics and interventions in pediatric neurological conditions. Her habilitation to direct research (HDR) from Paris VII in 2015 signifies her leadership in pioneering new approaches in neurodevelopmental research and imaging methodologies.

🌍 Impact and Influence

Prof. Teissier’s influence is widely recognized through her dual role as a clinician and researcher. Her expertise in integrating medical imaging with clinical otorhinolaryngology has significantly impacted pediatric healthcare. Her work has shaped diagnostics and treatments for auditory and neurological disorders in children, establishing her as a leading figure in her field. Beyond her clinical practice, she has served as an influential educator and mentor, shaping the next generation of healthcare professionals and researchers.

🏆Academic Cites

Prof. Teissier's scholarly output has been widely cited, reflecting her contributions to otorhinolaryngology, neuroscience, and medical imaging. Her studies on neuroprotection and imaging-driven diagnostics have provided a foundation for numerous advancements in pediatric medicine, reinforcing her status as a highly cited researcher in these domains.

🌟 Legacy and Future Contributions

Prof. Teissier’s legacy is defined by her commitment to improving pediatric healthcare through innovation and education. She continues to push the boundaries of medical imaging in neurodevelopment and otorhinolaryngology. Her future endeavors are expected to focus on further advancing imaging technologies for early diagnosis and intervention, enhancing patient outcomes. Her interdisciplinary approach ensures her work will remain a cornerstone in medical research and clinical practice.

📝Medical Imaging

Prof. Natacha Teissier's research has consistently advanced the field of medical imaging, particularly in pediatric neuroprotection and otorhinolaryngology. Her integration of medical imaging techniques with clinical expertise exemplifies her contributions to early diagnostics and therapeutic innovations. As a leader in using medical imaging for pediatric healthcare, her work continues to inspire and guide medical professionals worldwide.

Notable Publication


📝Position Statement on the Diagnosis and Management of Congenital Pituitary Deficiency in Adults: The French National Diagnosis and Treatment Protocol (NDTP)

Authors: Castets, S., Albarel, F., Bachelot, A., Brue, T., Reynaud, R.

Journal: Annales d'Endocrinologie

Year: 2024

Citations: 0


📝Nap Polysomnography in Infants with Laryngomalacia as a Tool to Predict Treatment Strategy

Authors: Lajili, M., Teissier, N., Dudoignon, B., Delclaux, C., Bokov, P.

Journal: European Archives of Oto-Rhino-Laryngology

Year: 2024

Citations: 0


📝Diagnosis and Management of Congenital Hypopituitarism in Children

Authors: Castets, S., Thomas-Teinturier, C., Villanueva, C., Léger, J., Reynaud, R.

Journal: Archives de Pediatrie

Year: 2024

Citations: 2


📝Pediatric Inferior Turbinate Hypertrophy: Diagnosis and Management. A YO-IFOS Consensus Statement

Authors: Maniaci, A., Calvo-Henriquez, C., Cammaroto, G., Cocuzza, S., Saibene, A.M.

Journal: Laryngoscope

Year: 2024

Citations: 2


📝Child-TRACH: Management of Tracheostomy in Children, a Yo-IFOS Survey

Authors: Tabey, M., Ghelab, Z., Chebib, E., Teissier, N.

Journal: International Journal of Pediatric Otorhinolaryngology

Year: 2024

Citations: 0


📝Cost-Effectiveness of Screening and Valacyclovir-Based Treatment Strategies for First-Trimester Cytomegalovirus Primary Infection in Pregnant Women in France

Authors: Périllaud-Dubois, C., Hachicha-Maalej, N., Lepers, C., Vauloup-Fellous, C., Picone, O.

Journal: Ultrasound in Obstetrics and Gynecology

Year: 2023

Citations: 5

Mahammad Baghir Baghirov – Nanomaterials – Young Scientist Award 

Mr. Mahammad Baghir Baghirov - Nanomaterials - Young Scientist Award 

Baku State University - Azerbaijan 

Author Profile

Scopus

Orcid

🎓 Early Academic Pursuits

Mr. Mahammad Baghir Baghirov embarked on his academic journey with a strong foundation in physics, earning a Bachelor's degree in Physics Teacher Education from Azerbaijan State Pedagogical University. His passion for the subject led him to pursue a Master’s degree in Nanoparticle Physics at Baku State University. Currently, Mr. Baghirov is a PhD student at Baku State University, focusing on the physics and technology of nanomaterials. His academic trajectory reflects a deep commitment to understanding and researching the intricate properties of nanomaterials.

💼 Professional Endeavors

Mr. Baghirov has had a diverse professional experience that spans teaching, research, and technical roles. He worked as a Physics Teacher and Researcher, where he contributed to various scientific studies, particularly in the field of nanomaterials. His role as a Sales Manager at Azecolab LLC further broadened his skill set, allowing him to combine technical expertise with managerial responsibilities. Additionally, he contributed to the STEAM Azerbaijan project, assisting as an assistant teacher and enhancing his practical experience in interdisciplinary education. Through these experiences, Mr. Baghirov has demonstrated a versatile approach to both research and application in his field.

🔬 Contributions and Research Focus

Mr. Baghirov’s research focus lies primarily in the synthesis, characterization, and application of nanomaterials, with a specific emphasis on graphene oxide (GO) nanolayers and silver-based nanoparticles (Ag-NWs). His work includes the study of the structure, morphology, electrical, and optical properties of GO-based thin films and their composites. He has conducted extensive research on the effects of temperature and gamma radiation on the physical properties of these materials, furthering the understanding of how environmental factors influence their behavior. Moreover, he has synthesized and studied GO/AgNWs and AgNWs/PVAbased composites, contributing valuable insights to the field of nanomaterials and their potential applications in various technologies.

🌍 Impact and Influence

Mr. Baghirov's research in the field of nanomaterials has had a significant impact on the scientific community, particularly in the areas of nanotechnology and materials science. His work on graphene oxide and silver-based nanoparticles has advanced the understanding of the properties of these materials and their potential applications in electronics, optics, and other industries. His contributions to the nanomaterials field, along with his engagement in the STEAM Azerbaijan project, demonstrate his dedication to both scientific research and educational outreach. His involvement in the synthesis and characterization of nanomaterials ensures that his work is integral to the development of new materials for future technological applications.

🏆Academic Cites

As a budding researcher in the field of nanomaterials, Mr. Baghirov has already begun to contribute to the academic body of knowledge with his scientific publications. His studies on graphene oxide and silver nanowires, along with his work on the effects of temperature and radiation on these materials, have gained recognition in scientific circles. His research is expected to continue to be cited and referenced by peers in the field, helping to propel further innovations in nanomaterials and their applications.

🌟 Legacy and Future Contributions

Looking ahead, Mr. Baghirov’s future contributions to the field of nanomaterials are poised to have a lasting impact. His current research on the properties and applications of graphene oxide and silver-based nanomaterials is paving the way for future advancements in nanotechnology. His work holds the potential to influence a wide range of industries, from electronics to healthcare. As he continues his doctoral studies, Mr. Baghirov’s legacy will be defined by his pioneering research in the synthesis, characterization, and application of nanomaterials, ensuring that his contributions will be felt for years to come.

📝Nanomaterials

Mr. Baghirov’s research on nanomaterials such as graphene oxide and silver nanowires has made a significant impact in the field, advancing both the theoretical and practical understanding of these materials. His investigations into the nanomaterials’ properties, particularly under the influence of external factors such as temperature and radiation, offer valuable insights for future applications. The continued exploration and development of nanomaterials will be heavily influenced by his groundbreaking work in this area.

Notable Publication


📝Photophysical Properties of Ga₀.₉₅B₀.₀₅Se Crystals: Photoconductivity and Photoluminescence Studies

Authors: Balayeva, L., Akhmedova, F., Guseinov, A., Salmanov, V., Baghirov, M.B.

Journal: Journal of Luminescence

Year: 2025

Citations: 0


📝The Influence of Gamma Radiation on the Structure and Morphology of AgNWs/GO Nanocomposites

Authors: Baghirov, M.B., Muradov, M., Huseynov, E., Huseynali, R.F., Conradi, M.

Journal: Radiation Physics and Chemistry

Year: 2025

Citations: 0


📝Preparation of Anisotropic AgNWs/PVA/Ag₂S Nanocomposites via a Vapor-Phase Sulfidation Process

Authors: Baghirov, M.B., Muradov, M., Eyvazova, G., Kochari, G.E., Huseynali, R.F.

Journal: RSC Advances

Year: 2024

Citations: 1


📝Effect of Sulphidation Process on the Structure, Morphology, and Optical Properties of GO/AgNWs Composites

Authors: Baghirov, M.B., Muradov, M., Eyvazova, G., Gasımov, E., Rzayev, F.

Journal: RSC Advances

Year: 2024

Citations: 2


📝The Effect of Thermal Annealing of GO/PVA on Their Physical, Structural, and Morphological Properties

Authors: Gahramanli, L., Bellucci, S., Muradov, M., Eyvazova, G., Vacacela Gomez, C.

Journal: Composite Interfaces

Year: 2024

Citations: 0


📝Fabrication and Dielectric Spectroscopy Analysis of FeGaInS₄/PVA Composite Materials

Authors: Addayeva, Z., Azizian-Kalandaragh, Y., Niftiyev, N., Baghirov, M.B., Muradov, M.

Journal: Journal of Vinyl and Additive Technology

Year: 2024

Citations: 0

Ahmed Mehaney – Photonics – Best Researcher Award

Assist Prof Dr. Ahmed Mehaney - Photonics - Best Researcher Award 

Beni-Suef University - Egypt

Author Profile

Scopus

Google Scholar

🎓 Early Academic Pursuits

Dr. Ahmed Mehaney's academic journey began with an exceptional undergraduate performance at the Physics Department, Faculty of Science, Beni-Suef University, where he graduated in 2008 with an impressive 84.3% and a "Very Good" grade. His academic excellence was evident as he ranked first among his peers during his Pre-M.Sc. in Theoretical Physics (2009–2010). He pursued a Master's degree in Theoretical Physics, focusing on phononic crystals and their applications, and earned the Beni-Suef University Prize for the best Master’s thesis in 2013. His Ph.D., completed in 2017, further explored phononic crystals for various applications, cementing his expertise in photonic and phononic crystal technologies.

💼 Professional Endeavors

In 2023, Dr. Mehaney attained the title of Associate Professor in Theoretical Solid-State Physics, with a specialization in phononic and photonic crystals, awarded by Egypt's Committee of Promotions. His professional trajectory reflects a strong commitment to theoretical and applied physics, with significant contributions in the design and application of phononic and photonic crystals for innovative solutions in science and technology. Dr. Mehaney has also participated in prominent international conferences, delivering award-winning oral talks and posters.

🔬 Contributions and Research Focus

Dr. Mehaney’s research is centered on the theoretical modeling of photonic and phononic crystals, particularly their use in advanced materials science. He has published groundbreaking work, such as his 2024 paper in Nanomaterials, which introduced a novel approach to detecting fat concentrations in milk using one-dimensional photonic crystals. His paper in Scientific Reports (2019) was recognized among the Top 100 Physics papers of the year, showcasing his innovative contributions to material science. His research combines advanced computational methods with theoretical models, driving progress in the development of metamaterials and photonics.

🌍 Impact and Influence

Dr. Mehaney’s influence extends far beyond his publications. He has been repeatedly recognized as one of the world’s top 2% highly cited researchers by Stanford University and Elsevier (2021–2024), underscoring his impact on the global scientific community. His work has significantly influenced the fields of photonic and phononic crystals, making substantial contributions to the understanding and practical applications of these technologies in areas such as sensors, materials characterization, and nanoengineering.

🏆Academic Cites

The recognition of Dr. Mehaney's research is evident in the high citation rate of his publications. He has established a strong academic presence with his influential work being frequently cited in studies focused on photonic and phononic crystals. This extensive citation record reflects his critical role in advancing the field and providing a foundation for future research.

🌟 Legacy and Future Contributions

Dr. Ahmed Mehaney's legacy lies in his transformative research in photonic and phononic crystals and his commitment to mentoring the next generation of scientists. With numerous awards, including the State Encouragement Award in Science (2023), and recognition for his scholarly excellence, he has set a benchmark in theoretical solid-state physics. Looking forward, his work is poised to further explore cutting-edge applications of photonics and metamaterials, expanding their potential in technology and industry.

📝Photonics

Dr. Mehaney’s contributions to photonics continue to inspire advancements in materials science and engineering. His innovative approach to photonics applications has garnered international acclaim, and his work on photonic crystals remains a cornerstone of his research achievements.

Notable Publication


📝Selective IR Wavelengths Multichannel Filter Based on the One-Dimensional Topological Photonic Crystals Comprising Hyperbolic Metamaterial

Authors: Almawgani, A.H.M., Mohamed, A.G., Hajjiah, A., Mehaney, A., Elsayed, H.A.

Journal: Solid State Communications

Year: 2025

Citations: 0


📝Investigating the Impact of Shear and Bulk Viscosity on the Damping of Confined Acoustic Modes in Phononic Crystal Sensors

Authors: Elsayed, H.A., Ahmed, A.M., Alfassam, H.E., Abukhadra, M.R., Mehaney, A.

Journal: Scientific Reports

Year: 2024

Citations: 0


📝Improved Performance of Temperature Sensors Based on the One-Dimensional Topological Photonic Crystals Comprising Hyperbolic Metamaterials

Authors: Elsayed, H.A., Mohamed, A.G., El-Sherbeeny, A.M., Al Zoubi, W., Mehaney, A.

Journal: Scientific Reports

Year: 2024

Citations: 1


📝Ultra-Sensitive Optimized One-Dimensional Phononic Crystal as a Fluidic Sensor to Enhance the Measurement of Acetic Acid Concentration

Authors: Heravi, F.J., Hajjiah, A., Elsayed, H.A., Mehaney, A.

Journal: Scientific Reports

Year: 2024

Citations: 1


📝Fano Resonance in One-Dimensional Quasiperiodic Topological Phononic Crystals Towards a Stable and High-Performance Sensing Tool

Authors: Almawgani, A.H.M., Makhlouf Fathy, H., Alfassam, H.E., Al-Athwary, A.H., Mehaney, A.

Journal: Scientific Reports

Year: 2024

Citations: 1


📝Characteristics of Multi-Absorption Bands in Near IR Based on a 1D Photonic Crystal Comprising Two Composite Metamaterials

Authors: Medhat, M., Mehaney, A., Al-Dossari, M., Aly, A.H., Elsayed, H.A.

Journal: Scientific Reports

Year: 2024

Citations: 3

Resham Thapa – Char Materials as a Soil Amendment – Best Researcher Award 

Dr. Resham Thapa - Char Materials as a Soil Amendment - Best Researcher Award 

University of Wyoming - United States 

Author Profile

Scopus

Orcid

🎓 Early Academic Pursuits

Dr. Resham Thapa’s academic journey is marked by a diverse and interdisciplinary educational foundation. Starting with a Bachelor in Business Studies (B.B.S.) in 2001 from Tribhuvan University, Nepal, where he specialized in Financial Management, Dr. Thapa's interests later transitioned into sustainable agricultural practices. He earned a Master’s in Business Studies (M.B.S.) in 2005, followed by a Master’s in NGO Studies from Ajou University, South Korea, in 2010, showcasing his commitment to interdisciplinary learning. His formal foray into agricultural science began with an M.S. in Agricultural Economics in 2020, culminating in a Ph.D. in Soil Sciences in 2023 from the University of Wyoming (UW). His dissertation focused on the innovative use of char materials as a soil amendment, demonstrating a strong emphasis on sustainability and soil health.

💼 Professional Endeavors

Dr. Thapa has gained extensive experience in academia, research, and applied project management. He began his career as a Lecturer at Tribhuvan University-affiliated colleges in Nepal, teaching and supervising undergraduate students. His expertise in community mobilization was evident during his tenure as a Social Mobilization Expert for the Renewable Energy Project in Nepal. Currently, Dr. Thapa serves as a Research Professional at the School of Energy Resources, University of Wyoming, where he focuses on soil amendment research using coal char and biochar. His work integrates experimental design, field trials, and data analysis to evaluate the impact of char materials on soil health and crop yield.

🔬 Contributions and Research Focus

Dr. Thapa’s research specializes in the use of char materials as a soil amendment, an innovative approach aimed at enhancing soil health and sustainable crop production. His Ph.D. research investigated the effects of coal char on plant growth, crop yield, and soil properties, providing insights into nutrient availability, soil retention, and ecological sustainability. He has designed and conducted extensive field experiments, lab analyses, and greenhouse trials, applying his expertise to explore the synergy between char materials, compost, and fertilizers. His ability to merge economic risk analysis with soil science adds a unique perspective to his work, making it both scientifically robust and practically applicable.

🌍 Impact and Influence

Dr. Thapa’s contributions to soil health and sustainable agriculture have had a significant impact on both academic and applied sectors. His research on char materials as a soil amendment has influenced agricultural practices, particularly in resource-constrained environments like Wyoming. His work earned him several accolades, including the Wold Foundation Student Oral Poster Competition (1st Place) and the Eldon and Josephine Johnston Family Graduate Fellowship in Agriculture. These awards reflect his scientific rigor and his ability to communicate complex ideas effectively to diverse audiences.

🏆Academic Cites

Dr. Thapa’s research outputs, disseminated through peer-reviewed journals and scientific presentations, are widely cited within the fields of soil science and sustainable agriculture. His innovative application of char materials as a soil amendment has become a reference point for researchers exploring the ecological and economic viability of biochar and coal char in agricultural settings.

🌟 Legacy and Future Contributions

Dr. Thapa’s legacy lies in his pioneering work on sustainable soil management using coal char and biochar. Moving forward, his contributions are expected to address critical global challenges related to soil degradation, food security, and environmental sustainability. His ongoing collaborations with stakeholders and research institutions aim to expand the application of char materials as a soil amendment, ensuring that his work continues to benefit future generations of farmers, researchers, and policymakers.

📝Char Materials as a Soil Amendment

Dr. Resham Thapa's innovative research on char materials as a soil amendment has redefined sustainable crop production by improving soil health and crop yields. His focus on char materials as a soil amendment integrates field experiments, data analysis, and practical applications, making his contributions invaluable. Future studies on char materials as a soil amendment will build on Dr. Thapa’s groundbreaking work, ensuring long-term agricultural sustainability.

Notable Publication


📝U.S. Cereal Rye Winter Cover Crop Growth Database

Authors: Huddell, A.M., Thapa, R., Marcillo, G.S., et al.

Journal: Scientific Data

Year: 2024

Citations: 1


📝Environmental Conditions Outweigh Seeding Rates for Cover Crop Mixture Performance Across the Northeast US

Authors: Boniface, H.S., Mirsky, S.B., Ryan, M.R., et al.

Journal: Field Crops Research

Year: 2024

Citations: 0


📝Spaceborne Imaging Spectroscopy Enables Carbon Trait Estimation in Cover Crop and Cash Crop Residues

Authors: Jennewein, J.S., Hively, W., Lamb, B.T., et al.

Journal: Precision Agriculture

Year: 2024

Citations: 0


📝Enhancing Corn Yield and Soil Quality in Irrigated Semiarid Region with Coal Char and Biochar Amendments

Authors: Thapa, R.B., Budhathoki, S., Shilpakar, C., et al.

Journal: Soil Systems

Year: 2024

Citations: 1


 

📝Artificial Intelligence and Satellite-Based Remote Sensing Can Be Used to Predict Soybean (Glycine max) Yield

Authors: Joshi, D.R., Clay, S.A., Sharma, P., et al.

Journal: Agronomy Journal

Year: 2024

Citations: 6


📝An Assessment of Plant Growth and Soil Properties Using Coal Char and Biochar as a Soil Amendment

Authors: Thapa, R.B., Coupal, R.H., Dangi, M.B., Stahl, P.D.

Journal: Agronomy

Year: 2024

Citations: 2


📝Does Narrow Row Spacing Suppress Weeds and Increase Yields in Corn and Soybean? A Meta-Analysis

Authors: Singh, M., Thapa, R., Singh, N., et al.

Journal: Weed Science

Year: 2023

Citations: 1

Aqeel ur Rehman – Nanofluid Flow and Heat Transfer – Young Scientist Excellence Award

Dr. Aqeel ur Rehman - Nanofluid Flow and Heat Transfer - Young Scientist Excellence Award 

The Islamia University of Bahawalpur - Pakistan 

Author Profile

Scopus

🎓 Early Academic Pursuits

Dr. Aqeel ur Rehman began his academic journey with a strong foundation in mathematics, earning his Bachelor of Science and later his Master of Science in Mathematics from The Islamia University of Bahawalpur. His academic excellence continued as he pursued a Master of Philosophy in Mathematics and culminated in his Doctor of Philosophy in Mathematics, completed between 2018 and 2022. Throughout his early academic years, Dr. Rehman displayed exceptional analytical skills and a deep understanding of mathematical principles, setting the stage for his future contributions in applied mathematics and computational modeling.

💼 Professional Endeavors

Dr. Aqeel ur Rehman has demonstrated a commitment to applying mathematical theories in real-world scenarios, particularly in the areas of mathematical analysis, modeling, and problem-solving. His professional endeavors have been marked by his ability to design complex models and utilize mathematical software to optimize system functions. He is a skilled communicator, fluent in both English and Urdu, and is adept at organizing work, analyzing problems, and meeting deadlines. Dr. Rehman’s training, combined with his teamwork skills, has enabled him to contribute meaningfully to various research projects, enhancing the practical applications of his mathematical expertise.

🔬 Contributions and Research Focus

Dr. Aqeel ur Rehman’s research primarily focuses on nanofluid flow and heat transfer, a crucial area in engineering and applied mathematics. His contributions to this field include advanced mathematical models that describe the behavior of nanofluids in various systems, as well as their impact on heat transfer processes. These models have significant implications for improving thermal management in engineering applications, such as cooling systems, energy production, and electronic devices. His research has led to deeper insights into the mechanisms of heat transfer in nanofluids, paving the way for more efficient systems in industries that rely on heat exchange.

🌍 Impact and Influence

Dr. Aqeel ur Rehman’s impact and influence in the field of nanofluid flow and heat transfer have been steadily growing. His research has not only advanced mathematical modeling techniques but also contributed to practical solutions in energy efficiency and thermal management. Dr. Rehman’s work is highly regarded by both his peers and industry professionals, and his ability to solve complex problems through mathematical approaches has led to real-world applications. His ongoing research is helping to address key challenges in areas such as energy conservation and environmental sustainability.

🏆Academic Cites

Dr. Aqeel ur Rehman’s academic contributions have garnered attention in the form of citations and recognition from the academic community. His work on nanofluid flow and heat transfer has been cited in numerous studies that seek to build on or apply his mathematical models. The increasing number of citations reflects the relevance and influence of his research, which continues to inspire further developments in this field.

🌟 Legacy and Future Contributions

Looking ahead, Dr. Aqeel ur Rehman is poised to make lasting contributions to the field of nanofluid flow and heat transfer. His future research aims to refine and expand the models he has developed, with the goal of improving thermal management systems across various industries. Dr. Rehman is dedicated to keeping pace with the latest developments in mathematics and applied science, ensuring that his work continues to have a significant impact on both theoretical and applied research. His legacy will be defined by his innovations in mathematical modeling and the practical applications that result from his contributions.

📝Nanofluid Flow and Heat Transfer

Dr. Aqeel ur Rehman’s extensive research in nanofluid flow and heat transfer has provided key insights into how nanofluids behave in complex systems, enhancing the efficiency of heat exchange processes. His mathematical models in nanofluid flow and heat transfer are widely cited in academic research, demonstrating their significance in solving real-world engineering problems. The future of nanofluid flow and heat transfer research looks promising under his leadership, with new advancements expected to further optimize thermal management systems.

Notable Publication


📝Comparative Study of Yamada-Ota and Xue Models for MHD Hybrid Nanofluid Flow Past a Rotating Stretchable Disk: Stability Analysis

Authors: Rafiq, M.Y., Sabeen, A., Rehman, A., Abbas, Z.

Journal: International Journal of Numerical Methods for Heat and Fluid Flow

Year: 2024

Citations: 0


📝Integration of Statistical and Simulation Analyses for Ternary Hybrid Nanofluid Over a Moving Surface with Melting Heat Transfer

Authors: Rehman, A.U., Abbas, Z., Hussain, Z., Hasnain, J., Asma, M.

Journal: Nanotechnology

Year: 2024

Citations: 5


📝On Generalized Bödewadt Flow of TiO2/Water Nanofluid Over a Permeable Surface with Temperature Jump

Authors: Abbas, Z., Siddique, S., Rafiq, M.Y., Rehman, A.U.

Journal: Advances in Mechanical Engineering

Year: 2023

Citations: 5


📝Intensification of Heat and Mass Transfer in Nanomaterial Flow Over a Rotating Channel with Chemical Reaction: A Comparative Study

Authors: Rehman, A.U., Abbas, Z., Ali, A., Alzahrani, A.K., Asma, M.

Journal: ZAMM Zeitschrift fur Angewandte Mathematik und Mechanik

Year: 2023

Citations: 4


📝Flow Dynamics of MHD Hybrid Nanofluid Past a Moving Thin Needle with a Temporal Stability Test: A Galerkin Method Approach

Authors: Abbas, Z., Rehman, A.U., Khaliq, S., Rafiq, M.Y.

Journal: Numerical Heat Transfer, Part B: Fundamentals

Year: 2023

Citations: 11


📝Prediction of Heat and Mass Transfer in Radiative Hybrid Nanofluid with Chemical Reaction Using the Least Square Method: A Stability Analysis of Dual Solution

Authors: Rehman, A.U., Abbas, Z., Hasnain, J.

Journal: Numerical Heat Transfer; Part A: Applications

Year: 2023

Citations: 16