Aadil Bhat | Optical Physics | Best Researcher Award

Dr. Aadil Bhat | Optical Physics | Best Researcher Award

konkuk University | South Korea

 

 

 

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Aadil Ahmad Bhat embarked on his academic journey with a strong foundation in the sciences. Beginning with his schooling at Govt High School Hugam in Anantnag, he demonstrated exceptional aptitude and enthusiasm for learning. His academic prowess continued through his higher secondary education at Govt Higher Secondary School Bijbehara, where he laid the groundwork for his future studies in chemistry. This early academic foundation provided the framework for his subsequent achievements in higher education and professional endeavors.

PROFESSIONAL ENDEAVORS

With a solid academic background, Aadil Ahmad Bhat pursued higher education at esteemed institutions, shaping his expertise in chemistry. He obtained his Bachelor of Science degree from the University of Kashmir, followed by a Master of Science degree from Jiwaji University, Gwalior. His dedication to the field led him to pursue a Ph.D. in Chemistry at the School of Studies in Chemistry, Jiwaji University, where he delved deep into the realm of perovskite materials research.

CONTRIBUTIONS AND RESEARCH FOCUS

Throughout his academic journey, Aadil Ahmad Bhat exhibited a keen interest in perovskite materials research. His doctoral thesis, titled "Hydrothermal Synthesis, Characterization and Optoelectronic Properties of Perovskite nanoparticles," exemplifies his commitment to advancing the understanding and application of perovskite materials in various fields such as photovoltaics, LEDs, and sensors. His research contributions have significantly enriched the scientific community's knowledge base in this cutting-edge field.

IMPACT AND INFLUENCE

Aadil Ahmad Bhat's research endeavors have left a profound impact on the field of optical physics, particularly in the domain of perovskite materials. His deep understanding of perovskite crystal structures and synthesis techniques has paved the way for innovations in solar cell technology and other optoelectronic devices. His work has garnered attention for its potential to revolutionize renewable energy solutions and drive advancements in sustainable technology.

ACADEMIC CITATIONS

Aadil Ahmad Bhat's contributions to perovskite materials research have been recognized and cited by peers and scholars in the scientific community. His publications in reputed journals serve as a testament to the significance and relevance of his work. His research findings continue to inspire further exploration and investigation in the field of optical physics and materials science.

LEGACY AND FUTURE CONTRIBUTIONS

As Aadil Ahmad Bhat continues his academic journey as a Postdoctoral Fellow at Konkuk University in Seoul, South Korea, he is poised to build upon his legacy of impactful research in perovskite materials. With a dedication to pushing the boundaries of knowledge and a passion for sustainable energy solutions, he is committed to making significant contributions to the advancement of perovskite technology. His future endeavors hold the promise of shaping the future of optical physics and materials science for generations to come.

NOTABLE PUBLICATION

Band-gap alteration of Zn2SnO4 nanostructures for optical and photo-luminescent applications   2023 (3)

Photoluminescence Emission Studies on a Lanthanum-Doped Lead Free Double Halide Perovskite, La:Cs2SnCl6    2023 (2)

Confocal mapping of stable room-temperature emission centers in gadolinium doped vacancy-ordered double halide perovskite , Gd:Cs2SnCl6  2023 (2)

Study of electrochemical sensor and energy storage properties of MnTiO3 nano‐perovskite  2022 (2)

Room temperature photoluminescent study of thermally grown reduced graphene oxide quantum dots  2022 (3)

 

DJ Bijulin Greety | Atomic Physics | Best Researcher Award

Mrs. DJ Bijulin Greety | Atomic Physics | Best Researcher Award

Karunya Institute of Technology and Sciences | India

Author Profile

Scopus

Early Academic Pursuits:

Bijulin Greety D.J began her academic journey by pursuing a Bachelor's degree in Aerospace Engineering at Karunya University, where she demonstrated outstanding academic performance, graduating with a percentage of 75.5 in 2015. This laid the foundation for her future endeavors in the field of aviation and technology.

Professional Endeavors:

Subsequently, Greety pursued a Master's degree in Avionics from Hindustan University, where she excelled with a remarkable percentage of 85.2, demonstrating her dedication and expertise in the field. Following her master's studies, she continued her academic journey by enrolling in a Ph.D. program at Karunya University, with a focus on Atomic Physics, marking her transition into advanced research and scholarly pursuits.

Contributions and Research Focus:

Throughout her academic and professional journey, Greety has made significant contributions to the field of Atomic Physics. Her research focus lies in the design and development of advanced materials with enhanced thermal and electrical properties for electromagnetic interference (EMI) shielding in aircraft cockpit walls. Her work has been recognized internationally, with a paper published in Materials Today: Proceedings, showcasing her expertise and innovative approach to solving real-world challenges in aviation technology.

Impact and Influence:

Greety's contributions to the field of Atomic Physics have had a notable impact, both academically and industrially. Her research has the potential to revolutionize aircraft design and manufacturing processes by improving the safety and efficiency of cockpit systems through innovative materials and shielding techniques. Furthermore, her involvement in flight test training at IIT Kanpur highlights her practical knowledge and application of theoretical concepts in real-world settings.

Academic Citations:

Greety's research output and publications have likely garnered academic citations, reflecting the recognition and influence of her work within the scientific community. Her contributions to Materials Today: Proceedings and other scholarly platforms serve as a testament to her expertise and scholarly achievements in Atomic Physics.

Legacy and Future Contributions:

As Greety continues her academic and professional journey, her legacy in Atomic Physics is poised to grow. Her dedication to advancing knowledge and solving complex challenges in aviation technology ensures that her contributions will have a lasting impact on the field. With a strong foundation in academic excellence and practical experience, Greety is well-positioned to shape the future of Atomic Physics and its applications in aerospace engineering.

Highlight on Atomic Physics:

Atomic Physics serves as the cornerstone of Greety's academic and professional pursuits, evident from her doctoral research and published work in the field. Her expertise in Atomic Physics enables her to address critical challenges in aviation technology, such as electromagnetic interference shielding, with innovative solutions and advanced materials. Through her research and contributions, Greety exemplifies the importance of Atomic Physics in advancing aerospace engineering and enhancing aircraft safety and performance.

Notable Publication:

A study on EMI shielding in aircraft: introduction, methods and significance of using electrospun nanocomposites  March 2024

 

Andrés Velastegui-Montoya | Remote Sensing | Best Paper Contribution Award

ESPOL Polytechnic University | Ecuador

 

Author Profile:

Orcid

Early Academic Pursuits:

Andrés Velástegui Montoya commenced his academic journey with a Bachelor's degree in Mechanical Engineering from the Escuela Superior Politécnica del Litoral (ESPOL), supported by scholarships for equity, excellence, and educational practice in Barcelona. He further pursued his academic endeavors with a Master's degree in Environmental Engineering from the University of Barcelona, facilitated by a scholarship from SENESCYT. This early academic foundation laid the groundwork for his subsequent research and professional pursuits.

Professional Endeavors:

Throughout his career, Velástegui Montoya has been actively engaged in both research and teaching roles. He has served as a Researcher at ESPOL, affiliated with the Faculty of Earth Sciences Engineering (FICT), since 2018. Additionally, he holds the position of Codirector of the research group "Hydro-environmental Studies and Models" at the Federal University of Pará since 2015. Concurrently, he has been contributing as a teacher at ESPOL since 2012, imparting knowledge in various disciplines within Civil and Environmental Engineering.

Contributions and Research Focus:

Velástegui Montoya's research focuses on hydro-environmental studies and models, with a particular emphasis on Geographic Information Systems (GIS) and Remote Sensing. His work encompasses investigations into environmental impacts, evaluation, and mitigation strategies, contributing significantly to the understanding and management of environmental systems.

Impact and Influence:

As a prominent figure in the field of environmental engineering, Velástegui Montoya's contributions have had a substantial impact on academia and practical applications. His research outputs and teaching activities have influenced numerous students, researchers, and practitioners, shaping their understanding and approach towards environmental challenges.

Academic Citations:

His research publications have garnered citations from peers and experts in the field, reflecting the significance and relevance of his work in the academic community. Velástegui Montoya's contributions have contributed to advancing knowledge and fostering innovation in environmental sciences and engineering.

Legacy and Future Contributions:

As Velástegui Montoya continues to make strides in his career, his legacy lies in his dedication to research, education, and academic leadership. His endeavors in promoting environmental awareness and sustainability through research, teaching, and academic management leave a lasting impact on future generations of scholars and practitioners. With a focus on remote sensing and GIS, he is poised to further enrich the field with his expertise and insights.

Remote Sensing:

Remote sensing plays a crucial role in Montoya's research endeavors, as evident from his participation in specialized diploma programs such as the "Especialista en Georreferenciamiento, Geoprocesamiento y Sensoramiento Remoto" from Estácio de Sá University. His involvement in remote sensing applications underscores its importance in environmental monitoring, modeling, and decision-making processes, reflecting Montoya's interdisciplinary approach to addressing environmental challenges.

Notable Publication:

Land use and land cover as a conditioning factor in landslide susceptibility: a literature review  2023 (16)

Google Earth Engine: A Global Analysis and Future Trends  2023 (8)

Land use/land cover of petroleum activities in the framework of sustainable development  2023 (1)

The Role of Personality in the Adoption of Pro-Environmental Behaviors through the Lens of the Value-Belief-Norm Theory   2023 (3)

Acoustic contamination assessment during the transition between the COVID-19 restrictions and reactivation: A exploratory analysis in Guayaquil  2023 (1)

 

 

 

G Indika Priyanthi Perera | Nano Materials | Best Researcher Award

University of Ruhuna | Sri Lanka

 

AUTHOR PROFILE:

Orcid

Google Scholar

EARLY ACADEMIC PURSUITS:

Dr. Mrs. Galkandearachchige Indika Priyanthi Perera began her academic journey at Ave Maria Convent, Negombo, Sri Lanka, where she excelled in her General Certificate of Education (O/L) with eight distinctions. Her passion for engineering led her to pursue her G.C.E. (A/L) with an impressive aggregate of 305, laying a strong foundation for her future academic endeavors. She continued her pursuit of knowledge at the University of Peradeniya, Sri Lanka, where she obtained a Bachelor of Science in Engineering with Second Class Honours with Upper Division, specializing in Production Engineering. Her academic excellence was further recognized with an EDCS scholarship for achieving an aggregate of more than 75% for her G.C.E.(A/L).

PROFESSIONAL ENDEAVORS:

Dr. Perera's professional journey spans various roles, showcasing her expertise and dedication to the field of engineering. She started as an Instructor at the Department of Engineering Mathematics, University of Peradeniya, followed by a stint as a Quality Assurance Engineer at Toroid International (Pvt) Limited, Katunayake, Sri Lanka. Her passion for academia led her back to the University of Ruhuna, where she served as a Temporary Senior Lecturer before assuming roles as Senior Lecturer Gr II and Senior Lecturer Gr I at the Department of Mechanical and Manufacturing Engineering. Her commitment to excellence is evident in her ongoing role as a Visiting Lecturer at the Faculty of Technology, University of Ruhuna.

CONTRIBUTIONS AND RESEARCH FOCUS:

Dr. Perera's contributions extend beyond the classroom, encompassing various academic and administrative roles. She has served as the Chairperson of the Internal Quality Assurance Cell, Faculty of Engineering, University of Ruhuna, demonstrating her commitment to maintaining high educational standards. Her involvement in curriculum development, as well as her role as a reviewer for academic programs, underscores her dedication to academic quality and innovation. Dr. Perera's research focus primarily revolves around Nano Materials, where she explores novel applications and advancements in this burgeoning field.

IMPACT AND INFLUENCE:

Dr. Perera's impact is felt not only through her academic contributions but also through her leadership and mentorship roles. As the Head of the Department of Mechanical and Manufacturing Engineering at the University of Ruhuna, she provided guidance and direction, shaping the future of engineering education. Her involvement in various committees and subcommittees highlights her influence in shaping institutional policies and initiatives.

ACADEMIC CITES:

Dr. Perera's research in Nano Materials has garnered significant attention within the academic community, reflected in her numerous citations and publications. Her work serves as a foundation for further exploration and advancement in this interdisciplinary field, contributing to the body of knowledge in engineering and materials science.

LEGACY AND FUTURE CONTRIBUTIONS:

Dr. Perera's legacy is one of excellence, innovation, and dedication to the field of engineering education. Her contributions have left an indelible mark on the institutions she has served, inspiring future generations of engineers and researchers. As she continues her academic journey, her focus on Nano Materials promises to pave the way for groundbreaking discoveries and advancements, further solidifying her legacy in the field.

NANO MATERIALS:

Perera's research interests also extend to the realm of Nano Materials, where she explores the unique properties and applications of materials at the nanoscale. Her expertise in this burgeoning field has positioned her as a leading authority, with her work driving advancements in areas such as nanotechnology and material science. Through her research and mentorship, Perera continues to push the boundaries of what is possible, unlocking new possibilities in the realm of Nano Materials.

NOTABLE PUBLICATION:

Green Metalworking Fluids for sustainable machining applications: A review  2020 (102) 

Potential of using polyethylene as viscosity enhancer of palm oil to use as a lubricating oil  2020 (4)

Experimental investigation of Minimum Quantity Lubrication (MQL) of coconut oil based Metal Working Fluid  2020 (22)

Surface quality evaluation of 0.2 % C and AISI 304 steels in turning with sustainable lubricating condition  2019 (97)

Ricardo Torres | Spectroscopy | Best Researcher Award

Federal University of Ceará | Brazil

AUTHOR PROFILE

Scopus

Orcid

EARLY ACADEMIC PURSUITS

Ricardo Belchior Torres embarked on his academic journey by earning a degree in Chemical Engineering from the Federal University of Ceará in 1993. He continued his academic pursuits by obtaining a Master's degree in Chemical Engineering in 1998 and a Ph.D. in Sciences from the Institute of Chemistry in 2004, both from the State University of Campinas (UNICAMP).

PROFESSIONAL ENDEAVORS

Throughout his career, Torres has held various significant positions in academia. He has served as a Full Professor in the Department of Chemical Engineering and is presently the Vic-Rector for Teaching and Research at FEI. From 2010 to 2022, he assumed roles such as Head of Department and Undergraduate Course Coordinator. Additionally, he played a crucial role in establishing the Stricto Sensu Postgraduate Program in Chemical Engineering at FEI in 2013, where he currently serves as the Coordinator.

CONTRIBUTIONS AND RESEARCH FOCUS

Torres has made substantial contributions to the field of Chemical Engineering, Chemistry, and Mechanical Engineering, with a particular emphasis on Thermodynamics and Physical Chemistry. His research focuses on the experimental study and modeling of thermophysical properties of liquid systems, combustible mixtures, and systems containing ionic liquids. He has also conducted research on PVT data at high pressures and applications of calorimetry and spectroscopic properties.

IMPACT AND INFLUENCE

Torres's work has had a significant impact on the scientific community. He has authored more than 200 works published in scientific journals and presented at national and international conferences. His research collaborations with universities and industries have further extended the reach of his contributions.

ACADEMIC LEGACY AND FUTURE CONTRIBUTIONS

As an educator and mentor, Torres has guided numerous graduate students, supervising 21 masters, three doctors, and four post-doctoral internships. He is also actively involved in reviewing for international scientific journals and advising organizations such as CAPES, CNPq, FAPESP, and FUNDEP. As a member of various national and international scientific associations, he continues to shape the future of the field through his academic leadership and research endeavors.

SPECTROSCOPY

Spectroscopy plays a crucial role in Torres's research, particularly in understanding the spectroscopic properties of various systems. His work involves utilizing spectroscopic techniques to investigate the behavior of liquid systems, combustible mixtures, and ionic liquids. By employing spectroscopy, Torres aims to enhance our understanding of thermophysical properties and contribute to advancements in chemical and mechanical engineering.

NOTABLE PUBLICATION

Measurement and correlation of thermodynamics properties of aqueous solutions containing glycols. Part II: Excess molar enthalpy  2023 (2)

Volumetric properties of binary mixtures of glycerol + alkanols (C1-C4): Experimental study and application of the Peng–Robinson–Stryjek–Vera equation of state  2022 (2)

Experimental study and correlation of the excess molar volume of binary liquid solutions of (amines + water) at different temperatures and atmospheric pressure  2021 (1)

Sahaya jude Sathiya dhas | Optical applications | Optical Physics Excellence Award

AUTHOR PROFILE

Scopus

Google Scholar

EARLY ACADEMIC PURSUITS

Dr. S. Sahaya Jude Dhas embarked on his academic journey with a fervent pursuit of knowledge, culminating in a distinguished educational background. Graduating with a Bachelor's and Master's degree in Physics from renowned institutions such as Madurai Kamaraj University and Manonmaniam Sundaranar University, respectively, he laid the foundation for a career marked by excellence. His educational journey continued with a Master of Arts in English from Annamalai University, reflecting a holistic approach to learning. Subsequently, he pursued higher studies, obtaining a Master of Philosophy in Physics from Bharadidasan University and earning the coveted title of Doctor of Philosophy in Physics from Madras University in 2014, a testament to his dedication and scholarly pursuit.

PROFESSIONAL ENDEAVORS

Dr. S. Sahaya Jude Dhas's professional journey epitomizes a commitment to academic excellence and scholarly contributions. With over 26 years of teaching experience, he has imparted knowledge across various educational institutions, fostering a passion for Physics among students. His tenure at Kings Engineering College as a Professor of Physics underscores his dedication to academic leadership and mentorship. Prior engagements at esteemed institutions such as Loyola College, Saveetha Engineering College, and Tagore Engineering College further enriched his pedagogical repertoire.

CONTRIBUTIONS AND RESEARCH FOCUS

Dr. S. Sahaya Jude Dhas's research interests encompass a diverse array of topics, with a primary focus on Optical Applications. His seminal contributions in Shock Wave Physics, Nanostructures, Spectroscopy, Crystal Growth, Thin Films, Luminescence, UV Blockers, Gas Sensors, Bacterial Inhibitors, and Photocatalysis have significantly advanced the field of Physics. Through rigorous inquiry and scholarly exploration, he has illuminated new pathways for scientific inquiry, elucidating the intricate mechanisms underlying optical phenomena and their practical applications.

IMPACT AND INFLUENCE

Dr. S. Sahaya Jude Dhas's scholarly endeavors have left an indelible mark on the scientific community, evident in his prolific publication record and substantial impact factor. With over 125 papers published in Science Citation Indexed Expanded Journals (SCIE) and a cumulative impact factor of 413.427, his research has garnered international acclaim. Notably, his contributions have been published in esteemed journals across quartiles, reflecting the breadth and depth of his scholarly influence.

ACADEMIC CITES

Dr. S. Sahaya Jude Dhas's work has been cited extensively, attesting to its relevance and significance in the scientific domain. His research findings have been instrumental in shaping the discourse surrounding Optical Applications, serving as a cornerstone for further investigation and scholarly dialogue. Through meticulous experimentation and theoretical elucidation, he has propelled the field forward, garnering recognition and acclaim from peers and colleagues alike.

LEGACY AND FUTURE CONTRIBUTIONS

As a stalwart in the field of Physics, Dr. S. Sahaya Jude Dhas's legacy is defined by his unwavering commitment to academic excellence and scholarly inquiry. His pioneering research in Optical Applications has laid the groundwork for future generations of scientists, inspiring them to push the boundaries of knowledge and innovation. With a steadfast dedication to advancing the frontiers of science, he continues to chart new territories and pave the way for transformative discoveries that will shape the future of Physics.

OPTICAL APPLICATIONS

Dr. Dhas has a keen interest in OPTICAL APPLICATIONS, evident in his research pursuits and publications. His work in this area explores the diverse applications of optics in fields such as spectroscopy, thin films, and luminescence. By leveraging the principles of optics, Dr. Dhas aims to develop innovative solutions for real-world challenges, contributing to advancements in technology and science.

NOTABLE PUBLICATION

Acoustic shock wave-induced ordered to disordered switchable phase transitions: A case study of ferroelectric triglycine sulphate single crystal for the application of molecular switches  April 2024

Role of annealing on the structural, optoelectronic and antibacterial properties of Sm-doped TiO2 quantum dots  April 2024

Growth of high quality KADP mixed crystals grown by conventional and sankaranayanan-ramasamy (SR) methods for nonlinear optical applications  March 2024

Acoustical shock wave induced enhancement of optical transparency in crystalline solid—a case study of p-Nitroaniline 

Ana Bratu | Spectroscopy | Best Researcher Award

Dr. Ana Bratu | Spectroscopy | Best Researcher Award

National Institute for Laser, Plasma and Radiation Physics | Romania

Author Profile

Scopus

Early Academic Pursuits:

Dr. Ana-Maria Bratu embarked on her academic journey at the University of Bucharest, where she obtained a Bachelor's Degree in Medical Physics. Her studies focused on the electrotransformation of microorganisms, laying the foundation for her future research endeavors. Subsequently, she pursued postgraduate studies at the same university, earning a Master of Science in Biophysics and Medical Physics. During this period, she conducted research on laser photoacoustic instruments for measuring biological markers. Her early academic pursuits provided her with a strong background in physics and spectroscopy, essential for her future contributions to the field.

Professional Endeavors:

Following her postgraduate studies, Dr. Bratu joined the National Institute for Laser Plasma and Radiation Physics (NILPRP) as a Research Assistant in 2005, marking the beginning of her professional career. Over the years, she progressed through various positions within the institute, including roles as a Scientific Researcher and Project Manager. Her tenure at NILPRP has been characterized by a relentless pursuit of excellence in laser technologies and spectroscopy, with a particular emphasis on applications in medicine, biology, and environmental science.

Contributions and Research Focus:

Throughout her career, Dr. Bratu has made significant contributions to the field of spectroscopy, particularly in the areas of photoacoustics and laser-matter interactions. Her research activities have encompassed a wide range of topics, including the development of infrared laser gas detection systems and the application of laser photoacoustic spectroscopy for real-time detection of trace gases at low concentrations. She has also played a pivotal role in advancing our understanding of modern high-impact applications of spectroscopy in fields such as food quality assessment, breath analysis, and environmental monitoring.

Impact and Influence:

Dr. Bratu's work has had a profound impact on the scientific community, as evidenced by her extensive publication record and numerous presentations at national and international conferences. Her expertise in networking and experimental design has enabled her to establish collaborations and demonstrate optical systems for the real-time detection of various gaseous molecules under laboratory conditions. Her contributions have not only advanced the frontiers of spectroscopy but have also paved the way for novel applications in medicine, biology, and environmental science.

Academic Cites:

Dr. Bratu's research has been widely cited in the academic literature, reflecting the significance and relevance of her work to the scientific community. Her publications have contributed to the advancement of knowledge in spectroscopy and have served as a source of inspiration for researchers working in related fields. The impact of her research extends beyond the boundaries of academia, with implications for technological innovation and societal benefit.

Legacy and Future Contributions:

As Dr. Bratu continues to pursue her research endeavors, her legacy as a leading figure in the field of spectroscopy is assured. Her commitment to excellence, coupled with her passion for advancing scientific knowledge, ensures that her contributions will endure for years to come. Looking ahead, Dr. Bratu remains dedicated to pushing the boundaries of spectroscopy and harnessing its potential for addressing pressing challenges in medicine, biology, and environmental science. Her future contributions promise to be as impactful and transformative as her past achievements.

Spectroscopy:

Dr. Ana-Maria Bratu's expertise in spectroscopy, particularly laser photoacoustic spectroscopy, has been instrumental in advancing research in various fields, including medicine, biology, environmental science, and technology. Her multidisciplinary approach and innovative contributions have solidified her reputation as a leading figure in spectroscopic research, with a profound impact on both academia and industry.

Notable Publication:

Sripriya Thiagarajan | Mems | Women Researcher Award

Dr. Sripriya Thiagarajan | Mems | Women Researcher Award

Jeppiaar Institute of Technology | India

AUTHOR PROFILE

ORCID

EARLY ACADEMIC PURSUITS

Dr. T. Sripriya commenced her academic journey with remarkable achievements during her schooling, demonstrating consistent excellence. This trajectory continued through her undergraduate and postgraduate studies, where she excelled in Electronics and Communication Engineering, earning a coveted University Gold Medal.

PROFESSIONAL ENDEAVORS

With over 19.4 years of experience, Dr. T. Sripriya has established herself as a dynamic education professional. Her career spans various roles, from Lecturer to Associate Professor, in esteemed institutions such as Panimalar Engineering College, Saveetha Engineering College, Prince group of Institutions, and Jeppiaar Institute of Technology.

CONTRIBUTIONS AND RESEARCH FOCUS ON MEMS

Dr. T. Sripriya's research focus lies in MEMS (Micro-Electro-Mechanical Systems), evident through her Ph.D. from SATHYABAMA INSTITUTE OF SCIENCE AND TECHNOLOGY. Additionally, her expertise extends to areas like Digital Logic Circuits, IoT (Internet of Things), and AI (Artificial Intelligence), as showcased by her published book and numerous patents.

IMPACT AND INFLUENCE

Beyond academia, Dr. T. Sripriya's influence is evident in her leadership roles and initiatives. She has received accolades such as the Best Mentor Award and Best Faculty Award for her exceptional contributions. Furthermore, her involvement as a doctoral committee member underscores her commitment to fostering research excellence.

ACADEMIC CITES

Dr. T. Sripriya's research contributions have been recognized in leading journals and conferences, affirming her scholarly impact in the field of MEMS and related disciplines.

LEGACY AND FUTURE CONTRIBUTIONS

As a visionary academician and innovator, Dr. T. Sripriya's legacy is defined by her transformative initiatives in organizing conferences, workshops, and training programs. Her efforts bridge academia and industry, paving the way for advancements in MEMS technology and interdisciplinary research endeavors.

 

 

 

Neil Phillips | Atomic Molecular | Outstanding Researcher in Atomic Physics Award

Dr. Neil Phillips | Atomic Molecular | Outstanding Researcher in Atomic Physics Award

Unversity of the West of England | United Kingdom

AUTHOR PROFILE

Scopus

Google Scholar

EARLY ACADEMIC PURSUITS

Neil Phillips embarked on his academic journey with a Bachelor's degree in Electrical and Electronic Engineering from Cardiff University, where he exhibited a keen interest in understanding the intricacies of technology. This foundation laid the groundwork for his subsequent academic pursuits, culminating in a Doctorate from the same institution, specializing in the Application of High-Temperature Superconductors to Electric Drives. His academic endeavors reflect a passion for delving into the fundamental workings of systems and seeking innovative solutions.

PROFESSIONAL ENDEAVORS

Following his academic achievements, Neil transitioned seamlessly into the realm of research and development. His tenure at Dyson Ltd. as a Technology Appraisal Manager showcased his adeptness at managing research teams, evaluating project proposals, and steering the company's research strategy. This experience equipped him with a robust understanding of technological landscapes and honed his skills in project management, financial oversight, and intellectual property management, Atomic Molecular.

CONTRIBUTIONS AND RESEARCH FOCUS

Neil's research trajectory has been marked by a diverse array of projects, ranging from exploring fungal architectures to pioneering advancements in Engineered Living Materials (ELMs) and liquid marble technology. His multidisciplinary approach to research underscores his ability to tackle complex challenges, evidenced by his involvement in projects funded by prestigious entities such as the EU and EPSRC. His contributions to the field extend beyond traditional boundaries, as exemplified by his innovative endeavors in bioelectronics, sustainable technologies, and computational substrates.

IMPACT AND INFLUENCE

Neil's research has garnered significant recognition, with accolades such as the Research Publication of the Year award from the Institute of Biological Engineering and the Vice-Chancellor's Challenge Award for his groundbreaking work on mitigating global warming. His initiatives in public engagement and knowledge exchange underscore his commitment to driving societal impact and fostering scientific literacy. Furthermore, his patents reflect a tangible legacy of innovation, contributing to advancements in areas such as power conversion, motor technology, and floor cleaning devices.

ACADEMIC CITATIONS

Neil's scholarly contributions have left an indelible mark on the academic community, evident from the citations and acknowledgments garnered by his publications. His research outputs have enriched the scientific discourse surrounding topics such as bioelectronics, fungal architectures, and sustainable technologies, Atomic Molecular, cementing his reputation as a thought leader in these domains.

LEGACY AND FUTURE CONTRIBUTIONS

As Neil Phillips continues to chart new frontiers in research and innovation, his legacy resonates through his seminal contributions to science and technology. His unwavering dedication to addressing societal challenges and pushing the boundaries of knowledge serves as an inspiration to future generations of researchers. With his diverse skill set, visionary outlook, and commitment to excellence, Neil remains poised to make enduring contributions to academia, industry, and society at large.

ATOMIC MOLECULAR

Throughout his career, Neil Phillips has demonstrated an atomic focus on understanding the molecular intricacies of various systems, from high-temperature superconductors to fungal architectures. His research endeavors delve into molecular-level phenomena, harnessing the potential of atomic structures to drive technological innovations. Whether exploring the properties of liquid marbles or designing modular bioreactor walls, Neil's work epitomizes a molecular approach to solving real-world problems, propelling scientific understanding and technological advancement forward.

NOTABLE PUBLICATION

No ultrasounds detected from fungi when dehydrated  2023 (1)

Electrical response of fungi to changing moisture content  2023 (4)

Kombucha electronics: electronic circuits on kombucha mats  2023 (4)

 

 

Maria Clelia Righi | surfaces | Molecular Physics Achievement Award

Prof. Maria Clelia Righi | surfaces | Molecular Physics Achievement Award

University of Blogna | Italy

Author Profile

Scopus

Orcid

Early Academic Pursuits

Maria Clelia Righi embarked on her academic journey with a Laurea Degree in Physics Cum Laude from the University of Modena and Reggio Emilia in 1998. She continued her scholarly pursuits, culminating in a PhD in Physics from the same university in 2004. Her early research focused on Density Functional Theory and its applications in materials science.

Professional Endeavors

Righi's career path led her through various academic positions, including roles as an Assistant Professor and later as an Associate Professor at the University of Modena and Reggio Emilia. Currently, she holds the esteemed position of Full Professor at the Alma Mater Studiorum University of Bologna, a testament to her expertise and contributions to the field of Physics.

Contributions and Research Focus

Righi's research is centered around Computational Material Science, with a particular emphasis on surfaces and interfaces. Her work spans from first-principles simulations to the development of computational methods in tribochemistry and friction design. Righi has made significant contributions to understanding the interactions and correlations in condensed matter systems, particularly in the realm of nanomechanics and tribology.

Impact and Influence

Righi's research has garnered widespread recognition, as evidenced by her coordination of numerous research projects, including prestigious grants such as the ERC Consolidator grant for the SLIDE project. Her collaborations with industry giants like Total Sa and Toyota Central R&D Labs underscore the practical implications of her work and its relevance to real-world applications.

Academic Citations

Righi's contributions have been cited extensively in the scientific literature, reflecting the impact of her research on the broader academic community. Her publications and presentations at international conferences have disseminated valuable insights into surface science and computational materials design.

Legacy and Future Contributions

As a leader in the field of Computational Material Science, Righi's legacy lies in her mentorship of researchers at all levels, from undergraduate students to postdoctoral fellows. Her dedication to teaching and supervision ensures the continued growth of the next generation of scientists, who will undoubtedly carry forward her innovative research endeavors in surfaces and interfaces.

Surfaces

Surfaces play a pivotal role in numerous scientific disciplines, from catalysis to nanotechnology. Righi's multidisciplinary approach and expertise in surface science position her as a key figure in advancing our understanding of surface phenomena and their implications for diverse technological applications. Her future contributions are poised to further elucidate the complexities of surface interactions and pave the way for novel materials design and engineering breakthroughs.

Notable Publication

Xsorb: A software for identifying the most stable adsorption configuration and energy of a molecule on a crystal surface October 2023