Thomas Odey Magu | Renewable energy | Lifetime achievement Award

Dr. Thomas Odey Magu | Renewable energy | Lifetime achievement Award 

University of Florida | United States 

AUTHOR PROFILE

EARLY ACADEMIC PURSUITS

Dr. Thomas Odey Magu's academic journey began at Christ the King Primary School, Okpoma-Yala, where he earned his First School Leaving Certificate (FSLC) from 1996 to 2002. He then attended Government Secondary School, Okpoma-Yala, and completed his Senior School Certificate Examination (SSCE) in 2008. Dr. Magu pursued his undergraduate studies at Cross River University of Technology (CRUTECH), Calabar, Nigeria, where he earned his B.Sc. in Chemistry in 2012. His undergraduate project focused on the proximate and mineral composition of Cnidoscolus carumbium (Hospital far). Dr. Magu furthered his education with an M.Sc. in Physical Chemistry from the University of Calabar, Nigeria, from 2015 to 2017, with a thesis on producing biodiesel from Jatropha curcas seeds oil using CoMgFe2O4 and MgFe2O4 as nanocatalysts. He is currently pursuing a Ph.D. in Chemistry at the University of Florida, focusing on the synthesis, characterization, and Density Functional Theory (DFT) study of catalysts for wastewater treatment and Renewable Energy applications.

PROFESSIONAL ENDEAVORS

Dr. Magu's professional experience includes serving as a Teaching and Research Assistant at the University of Florida from August to December 2022. His responsibilities included leading discussion sections, proctoring exams, grading assignments, and maintaining safety standards. He has also acquired various research and analytical skills at the University of Florida and the Institute of Chemistry, University of Chinese Academy of Sciences, Beijing, China. These skills include basic knowledge of SEM, NMR, GC-MS, and X-ray diffractometer, as well as proficiency in computational software such as Gaussian, Avogadro, Quantum Espresso, ChemDraw, and more.

CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Magu's research interests lie in heterogeneous catalysis and surface science, computational/theoretical chemistry, and Renewable Energy. His Ph.D. project focuses on the synthesis and characterization of catalysts for wastewater treatment and Renewable Energy applications, utilizing Density Functional Theory (DFT) to study these catalysts. His work on the production of biodiesel from Jatropha curcas seeds oil using nanocatalysts during his M.Sc. highlights his dedication to developing sustainable energy solutions. Additionally, he has worked on projects involving the synthesis of bio-surfactant and organic compounds templated noble metal nanoparticles for biological and chemical applications.

CITATIONS

  • Citations   978
  • h-index     17
  • i10-index  36

IMPACT AND INFLUENCE

Dr. Magu's influence extends beyond his research, evidenced by his participation in numerous professional activities and conferences. He has received several grants and awards, including the American Chemical Society's grant for the University of Florida Graduate Student Organization (GSO) chapter start-up, the Green Chemistry Student Chapter Award from the University of Calabar, and multiple research grants from the Royal Society of Chemistry. His dedication to Renewable Energy and sustainable practices has been recognized through these accolades, reflecting his impact on the academic and scientific communities.

ACADEMIC CITES

Dr. Magu's work has been cited in various academic publications, underscoring the significance of his contributions to the field of chemistry. His expertise in instrumental techniques and computational software has enabled him to produce high-quality research that addresses critical issues in energy, environment, and sustainability. His research on catalysts for wastewater treatment and Renewable Energy applications has been particularly impactful, offering innovative solutions for sustainable development.

LEGACY AND FUTURE CONTRIBUTIONS

Dr. Thomas Odey Magu's legacy in the field of chemistry is marked by his commitment to advancing Renewable Energy technologies and sustainable practices. His ongoing research at the University of Florida aims to develop efficient catalysts for environmental and energy applications, contributing to the global effort to combat climate change and promote sustainability. As he continues to explore new frontiers in catalysis and computational chemistry, Dr. Magu's work will undoubtedly leave a lasting impact on the scientific community and inspire future generations of researchers to pursue innovative solutions for a sustainable future.

NOTABLE PUBLICATION

Jeba Beula | Solar cells | Best Researcher Award 

Dr. Jeba Beula | Solar cells | Best Researcher Award 

Karunya Institute of Technology and Sciences | India 

AUTHOR PROFILE

EARLY ACADEMIC PURSUITS

Dr. R. Jeba Beula's academic journey is marked by a series of commendable achievements. She completed her B.Sc. in Physics from Rani Anna Govt. College, Manonmanium Sundaranar University, Tirunelveli, with First Class honors in April 2005. She continued her academic excellence by earning her M.Sc. in Physics from Sarah Tucker College, Manonmanium Sundaranar University, Tirunelveli, also with First Class honors in April 2007. Dr. Beula further honed her expertise with an M.Phil in Physics, specializing in Multiferroics, from Manonmanium Sundaranar University in November 2008, achieving a First Class grade. Her academic pursuits culminated in a Ph.D. in Physics from Karunya Institute of Technology and Sciences, Coimbatore, in November 2018, where her thesis was highly commended.

PROFESSIONAL ENDEAVORS

Dr. Beula has been an Assistant Professor in Physics at Karunya Institute of Technology and Sciences since August 2008, accumulating over 15 years of experience in teaching and research. She has guided numerous M.Sc. students to completion and is currently supervising five Ph.D. scholars. Her professional journey is marked by significant contributions to the field of solar cells, particularly DSSCs, where she has focused on modifying photoanode properties to enhance electron transport and overall efficiency.

CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Beula's research primarily revolves around solar cells, with a significant emphasis on DSSCs and perovskite solar cells (PSCs). Her doctoral research involved innovative approaches to improve the optical and electrical properties of TiO2-based photoanodes, leading to advancements in DSSC efficiency. She has also contributed to the development of new electron and hole transport materials for PSCs, aiming to enhance their performance. Additionally, her work on thermoelectric thin films for energy conversion has potential applications in wearable devices, showcasing her versatility in energy research.

IMPACT AND INFLUENCE

Dr. Beula's research has had a profound impact on the field of solar cells, particularly through her work on DSSCs. Her innovative methods for enhancing photoanode properties have contributed to significant improvements in DSSC efficiency, making them more viable for practical applications. Her research on PSCs and thermoelectric materials further extends her influence, addressing critical needs in sustainable energy and wearable technology. Her contributions have been recognized in various national and international conferences, underscoring her role as a thought leader in her field.

ACADEMIC CITATIONS

Dr. Beula's research has garnered attention and citations from her peers, reflecting the significance of her contributions to the field of solar cells. Her work on TiO2-based photoanodes and new transport materials for PSCs has been cited in numerous academic journals and conference proceedings. This growing body of citations underscores the impact and relevance of her research within the scientific community.

LEGACY AND FUTURE CONTRIBUTIONS

Dr. R. Jeba Beula aims to leave a lasting legacy in the field of solar cells through her continued research and innovation. Her work on enhancing the efficiency of DSSCs and developing advanced materials for PSCs and thermoelectric applications positions her as a key contributor to the future of sustainable energy technologies. As she continues to guide Ph.D. scholars and publish her findings, Dr. Beula's contributions are expected to drive further advancements in the field, addressing global energy challenges and promoting the adoption of renewable energy solutions.

SOLAR CELLS 

Dr. Beula's extensive research in solar cells has significantly advanced the understanding and efficiency of DSSCs and PSCs. Her innovative approaches to improving photoanode properties and developing new materials for transport layers have been instrumental in enhancing the performance of these solar cells. The future of solar cells research looks promising with Dr. Beula's continued contributions and dedication to sustainable energy solutions.

NOTABLE PUBLICATION