Buddha Deka Boruah – Energy storage – Best Researcher Award 

Dr. Buddha Deka Boruah - Energy storage - Best Researcher Award 

University College London (UCL) -  United Kingdom

Author Profile

Early Academic Pursuits

Dr. Buddha Deka Boruah's academic journey began with a Bachelor's degree in Physics from Cotton College, Assam, India. His thirst for knowledge led him to pursue a Master of Science in Physics from the prestigious Indian Institute of Technology Guwahati (IITG), where he delved into research on the structural and optoelectronic properties of hydrogenated amorphous silicon thin films on flexible substrates under the guidance of Prof. Pratima Agarwal. This foundational research laid the groundwork for his future endeavors in materials science and energy storage.

His academic pursuits reached new heights when he joined the Indian Institute of Science (IISc) Bangalore for his M.S.-Ph.D. dual degree program. Under the mentorship of Prof. Abha Misra, he explored the coupled optical and electrochemical properties of ZnCo2O4 for radiation-sensitive supercapacitors, which marked his entry into the realm of multifunctional nanomaterials and energy storage systems.

Professional Endeavors

Dr. Boruah's professional journey reflects a relentless pursuit of excellence in the field of energy storage and nanomaterials. After completing his doctoral studies, he embarked on a postdoctoral research journey as a Newton International Fellow at the Institute for Manufacturing (IfM), Department of Engineering, University of Cambridge, UK, under the supervision of Prof. Michael De Volder. Here, he further honed his expertise in developing aqueous energy storage systems, particularly focusing on zinc-based systems, and expanded his research into advanced multifunctional nanomaterials for photo-rechargeable energy storage systems.

His contributions as a Research Associate at the IfM, University of Cambridge, and subsequently as an Assistant Professor (Lecturer in Energy Storage) at the Institute for Materials Discovery (IMD), University College London (UCL), UK, have been instrumental in pushing the boundaries of knowledge in the field. At UCL, he established his research group with a primary focus on developing environmentally safe and cost-effective aqueous electrochemical energy storage systems, specifically zinc-ion-based systems.

Contributions and Research Focus

Dr. Boruah's research contributions have been multifaceted, spanning from fundamental understanding to practical applications in energy storage. His work encompasses the synthesis and characterization of novel electrode materials, development of advanced energy storage devices, and exploration of innovative approaches such as photo-rechargeable energy storage systems. His pioneering efforts in understanding the light-matter interaction of energy storage materials and leveraging optical energy to accelerate charge storage kinetics have opened new avenues for enhancing the performance of rechargeable batteries and supercapacitors.

His research focus on zinc-ion-based energy storage systems addresses critical challenges such as dendrite formation, charge storage characteristics, and electrode stability, paving the way for the development of next-generation energy storage technologies. Additionally, his investigations into planar energy storage systems and scalable nano-manufacturing techniques hold promise for realizing high-performance, on-chip energy storage solutions.

Accolades and Recognition

Dr. Boruah's contributions to the field have been widely recognized, as evidenced by the prestigious awards and accolades he has received throughout his career. Notable among these are the Royal Society-Newton International Fellowships Award, ACS Publications Peer Reviewer Certificate of Recognition & Appreciation, and India 2018 Top Cited Author Award from IOP Publishing. These honors underscore his significant impact on the scientific community and highlight the quality and significance of his research contributions.

Impact and Influence

Dr. Boruah's research endeavors have had a profound impact on the field of energy storage and nanomaterials, both in academia and industry. His innovative approaches to address key challenges in energy storage have led to advancements in materials design, device fabrication, and performance optimization, with far-reaching implications for renewable energy integration, portable electronics, and electric vehicles. His collaborative efforts with leading research institutions and industrial partners have facilitated knowledge exchange and technology transfer, further amplifying the impact of his work on society.

Legacy and Future Contributions

As Dr. Boruah continues to push the boundaries of knowledge in energy storage and nanomaterials, his legacy as a pioneering researcher and educator is firmly established. His commitment to excellence, interdisciplinary collaboration, and translational research will continue to inspire future generations of scientists and engineers. Looking ahead, Dr. Boruah's vision includes further advancements in sustainable energy storage technologies, continued innovation in materials synthesis and processing, and broader engagement with stakeholders to accelerate the transition towards a clean energy future. Through his unwavering dedication to scientific inquiry and technological innovation, Dr. Boruah will undoubtedly leave a lasting imprint on the field and contribute to shaping a more sustainable and resilient world.

Citations

  • Citations    2173
  • h-index       26
  • i10-index    32

Notable Publication

 

Haoming Ma – Energy and Utilities Analytics Award – Best Researcher

Dr. Haoming Ma - Energy and Utilities Analytics Award - Best Researcher Award

University of Texas at Austin - United States

Author Profile

Early Academic Pursuits

Dr. Haoming Ma's academic journey started with a Bachelor of Science degree in Energy Engineering with minors in Environmental Engineering and Energy Business and Finance from Pennsylvania State University in 2018. During his undergraduate studies, he demonstrated a keen interest in interdisciplinary fields, laying the foundation for his future endeavors. He pursued further education with a Master of Science in Energy and Mineral Engineering from Pennsylvania State University in 2019, where he explored the impact of blackout cost recovery on stock behavior among electric utilities. This research showcased his early aptitude for integrating economic analysis with energy systems.

Building upon his master's research, Haoming pursued a Ph.D. in Chemical and Petroleum Engineering at the University of Calgary. Under the mentorship of Dr. Zhangxing Chen and Dr. Sean T. McCoy, he delved into data-driven carbon dioxide enhanced oil recovery models, marking his transition into more specialized and impactful research areas.

Professional Endeavors

Dr. Haoming's professional journey has been characterized by diverse experiences across academia and industry. He has held various roles, including postdoctoral fellowships at the University of Calgary and the University of Texas at Austin, where he worked on energy emissions modeling, data analytics, and life-cycle assessments. His research contributions have spanned topics such as CO2 capture, utilization, and sequestration, reservoir simulation, and machine learning applications in energy systems.

Throughout his career, Haoming has actively engaged in teaching and mentoring activities, emphasizing interdisciplinary education in engineering and economics. His teaching endeavors include courses in Energy & Environmental Engineering and Energy Economics, demonstrating his commitment to nurturing the next generation of energy leaders.

Contributions and Research Focus On Energy and Utilities Analytics

Dr. Haoming's research focuses on integrating system modeling, data analytics, economic analysis, and policy evaluation to address economic and environmental challenges in energy systems and climate change mitigation. He has pioneered the development of AI-powered integrated frameworks for evaluating economic and environmental trade-offs in geological gas and energy storage. His work has laid the scientific groundwork for technology development and policy formulation towards environmental sustainability and carbon neutrality.

His specific research interests encompass reservoir simulation, system-level modeling and optimization, machine learning applications, techno-economic analysis, and life cycle assessment, with applications ranging from CO2 capture and storage to hydrogen production and storage.

Accolades and Recognition

Throughout his academic and professional journey, Haoming has garnered numerous accolades and recognition for his outstanding contributions. Notable awards include the Alberta Graduate Excellence Scholarship, Chemical & Petroleum Engineering Graduate Excellence Award, and Outstanding Graduate Teaching Assistant Award. His research has been recognized through prestigious conference presentations, peer-reviewed publications, and ongoing collaborations with leading institutions and researchers.

Impact and Influence

Dr. Haoming's research and academic pursuits have made a significant impact on advancing knowledge in energy systems, climate change mitigation, and interdisciplinary education. His innovative approaches to addressing complex energy and environmental challenges have contributed to shaping policy decisions and technological advancements in the energy industry. Through his teaching and mentoring efforts, he has inspired and equipped future generations to tackle the pressing issues of energy sustainability and environmental stewardship.

Legacy and Future Contributions

Looking ahead, Haoming Ma's legacy lies in his interdisciplinary approach to addressing pressing energy and environmental challenges. His continued contributions to research, education, and policy formulation are poised to shape the trajectory of the energy industry towards a sustainable and resilient future. With a focus on innovation, collaboration, and impact, Haoming remains dedicated to advancing knowledge and fostering positive change in the global energy landscape.

Citations

  • Citations   106
  • h-index       5
  • i10-index    5

Notable Publication

 

Maheswar Panda – Electrical Energy storage – Best Researcher Award 

Assist Prof Dr. Maheswar Panda - Electrical Energy storage - Best Researcher Award 

Dr. Harisingh Gour Vishwavidyalaya (A Central University), SAGAR,M.P- India

Author Profile

Early Academic Pursuits

Assist Prof Dr. Maheswar Panda embarked on his academic journey with a solid foundation in physics. Graduating with a first-class degree in B.Sc. (Hons) Physics from Utkal University, Bhubaneswar, he displayed exceptional proficiency, earning distinctions in Chemistry and Mathematics. His thirst for knowledge led him to pursue higher education, culminating in a Master's degree in Solid State Physics from Fakir Mohan University, Balasore.

Driven by a passion for research, Maheswar Panda enrolled in a Pre-Ph.D. program in Experimental Condensed Matter Physics at UGC-DAE CSR, Indore, further honing his expertise in his chosen field. His academic prowess and dedication were evident as he transitioned into doctoral studies at the prestigious Indian Institute of Technology, Kharagpur.

Professional Endeavors

Assist Prof Dr. Maheswar Panda's professional journey has been marked by a seamless blend of teaching and research. Starting as a Faculty on Contract at the Centre for Applied Physics, Central University of Jharkhand, Ranchi, he subsequently held temporary positions at esteemed institutions like the National Institute of Technology, Raipur, and the Central University of Rajasthan, Ajmer. His dedication and expertise led to his appointment as an Assistant Professor at the Department of Physics, Dr. Harisingh Gour Vishwvidyalaya (A Central University), Sagar, where he currently serves in a permanent capacity.

Contributions and Research Focus On Electrical Energy storage

Assist Prof Dr. Maheswar Panda's research interests encompass a wide array of topics in Experimental Condensed Matter Physics. His seminal work delves into areas such as High K Polymer Dielectrics, Energy Storage Materials, Phase Transitions, Multiferroics, Magneto-dielectrics & Magneto-Electrics, Ferroelectrics, and Optical Properties. Through his innovative research, he has significantly contributed to the understanding and advancement of these fields.

His doctoral thesis, titled "Scaling and Relaxation Behavior of Polymer-Metal Composites across the Percolation Threshold," exemplifies his commitment to exploring complex phenomena in materials science. Additionally, his patents on novel methods for developing improved polymer dielectrics highlight his innovative approach to addressing practical challenges in the field.

Accolades and Recognition

Assist Prof Dr. Maheswar Panda's contributions to the field have been recognized through numerous awards and honors. Notably, he was conferred the Young Achiever Award at ICC-2017 and received the INSA Visiting Fellowship Award in 2019. His research excellence was further acknowledged with prestigious awards such as the Best Technology Award from IIT Indore and the Best Second Poster Presentation Award at the International Conference on Functional Materials.

Furthermore, his nomination for the DAE Young Scientist Award and his receipt of travel grants underscore the significance of his research on a national and international scale.

Impact and Influence

Assist Prof Dr. Maheswar Panda's research has made a significant impact, as evidenced by his extensive publication record in reputed journals such as Applied Physics Letters, Physica B: Condensed Matter, and Modern Physics Letters B, among others. His work has not only expanded the frontiers of knowledge but also holds practical implications for various technological applications, particularly in the development of advanced dielectric materials for energy storage and electronic devices.

Legacy and Future Contributions

As an esteemed academician and researcher, Maheswar Panda's legacy lies in his invaluable contributions to the advancement of experimental condensed matter physics. His multidisciplinary approach, coupled with a deep-seated commitment to scientific inquiry, continues to inspire fellow researchers and students alike. Looking ahead, he remains poised to further push the boundaries of knowledge and innovation, leaving an indelible mark on the scientific community and society at large.

Citations

  • Citations   600
  • h-index       11
  • i10-index    13

Notable Publication