Deva Prasad Raju Borelli | Photonics | Excellence in Atomic, Molecular, and Optical Physics Award

Prof Dr. Deva Prasad Raju Borelli | Photonics | Excellence in Atomic, Molecular, and Optical Physics Award 

Sri Venkateswara Uiversity | India

AUTHOR PROFILE

EARLY ACADEMIC PURSUITS

Dr. Deva Prasad Raju's academic journey began with a fervent interest in materials science and photonics. His early engagement in research projects laid the groundwork for his future endeavors in the field.

PROFESSIONAL ENDEAVORS

Dr. Deva Prasad Raju's professional journey is marked by a prolific engagement in research projects and collaborations. From his pioneering work in lanthanide-doped phosphors to his contributions in the optimization of solid-state lasers, his expertise in photonics has been instrumental in advancing the field.

CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Deva Prasad Raju's research focus encompasses a wide range of topics in photonics, including the development of novel phosphors for white light-emitting diodes, optimization of glass-ceramics for high-power solid-state lasers, and fabrication of lead fluoroborate glasses for fiber lasers and optical amplifiers. His contributions have significantly enhanced our understanding of luminescence properties and materials optimization in photonics applications.

CITATIONS

  • Citations   3875
  • h-index     38
  • i10-index  70

IMPACT AND INFLUENCE

Dr. Deva Prasad Raju's impact extends beyond his individual research projects. His collaborations with esteemed colleagues and active participation in conferences and seminars have fostered an environment of knowledge exchange and innovation, shaping the trajectory of photonics research both nationally and internationally.

ACADEMIC CITES

Dr. Deva Prasad Raju's research findings have been disseminated widely in national and international conferences, as evidenced by the numerous papers presented and published in esteemed proceedings. His work has garnered recognition and citation in the academic community, further solidifying his reputation as a leading figure in photonics research.

LEGACY AND FUTURE CONTRIBUTIONS

As Dr. Deva Prasad Raju continues to push the boundaries of photonics research, his legacy of groundbreaking discoveries and collaborative endeavors will pave the way for future advancements in the field. With a steadfast commitment to innovation and excellence, he is poised to make enduring contributions to the ever-evolving landscape of photonics.

PHOTONICS

Dr. Deva Prasad Raju's expertise in photonics is evident throughout his academic and professional journey. From his early research projects to his ongoing collaborations, photonics remains at the forefront of his pursuits. His work encompasses a diverse array of topics within the field, showcasing his multidisciplinary approach and profound impact on photonics research.

NOTABLE PUBLICATION

Mohamed shaban | Nanophotonics | Best Researcher Award

Prof Dr. Mohamed shaban | Nanophotonics | Best Researcher Award

Islamic University of Madinah | Saudi Arabia

AUTHOR PROFILE

Scopus

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Early Academic Pursuits:

Prof. Dr. Mohamed Shaban Said Fadel embarked on his academic journey in the field of physics with a strong foundation laid during his undergraduate studies. He pursued a Bachelor of Science degree in Physics-Mathematics from the Faculty of Science, Beni-Suef branch, Cairo University, Egypt, graduating with distinction in 2000. Building upon this, he pursued Pre-Master Studies in Experimental Physics at the same institution, solidifying his knowledge base and setting the stage for further academic pursuits.

Professional Endeavors:

Following his undergraduate studies, Prof. Fadel embarked on a career dedicated to academia and scientific research. He commenced his professional journey as a Demonstrator in the Department of Physics at the Faculty of Science, Beni-Suef Branch, Cairo University, Egypt, where he contributed to the education of future physicists while furthering his own academic pursuits. His dedication and passion for research led him to pursue postgraduate studies, culminating in a Master of Science in Experimental Physics from the Faculty of Science, Beni-Suef University, Egypt, in 2006. His master's dissertation focused on the study of optical excitation of atoms by electron impact, demonstrating an early interest in experimental physics and its applications.

Contributions and Research Focus:

Throughout his career, Prof. Fadel has been deeply engaged in cutting-edge research across various domains of nanophotonics. His research interests span Electron-Atom Collision, Nanoporous Membranes, Photonic Nanostructures, Plasmonic Nanostructures, Thin Films, Polymers, Catalysts, Sensors, Water Desalination, Solar Energy Applications, and more. His multidisciplinary approach has led to significant contributions in areas such as water treatment technologies, renewable energy, biological and biomedical applications, and nanomaterials synthesis and characterization.

Impact and Influence:

Prof. Fadel's contributions to the field of nanophotonics have made a significant impact both nationally and internationally. His research findings have been published in numerous peer-reviewed journals and presented at prestigious conferences and symposiums. Through his innovative research endeavors, he has garnered recognition for his pioneering work in advancing our understanding of nanomaterials and their diverse applications.

Academic Citations:

The prolific nature of Prof. Fadel's research is reflected in his substantial academic citations. His publications have been cited extensively, attesting to the relevance and impact of his work within the scientific community. Prof. Fadel's contributions have not only expanded the frontiers of knowledge in nanophotonics but have also inspired future generations of researchers to explore new avenues in this dynamic field.

Legacy and Future Contributions:

As a dedicated educator, researcher, and mentor, Prof. Fadel's legacy extends beyond his scientific contributions. His leadership roles in academia, including his tenure as Vice Dean and Director of Nanophotonics and Applications Labs, have helped shape the academic landscape and fostered a culture of innovation and excellence. Looking ahead, Prof. Fadel remains committed to pushing the boundaries of nanophotonics, addressing pressing global challenges, and nurturing the next generation of scientific leaders through mentorship and collaboration.

Notable Publication:

From nutshells to energy cells: Pioneering supercapacitor electrodes via innovative argan nutshell activated carbon synthesis  30 March 2024

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)