Basanta Das – Hydrogen Storage Materials – Best Researcher Award

Dr. Basanta Das - Hydrogen Storage Materials - Best Researcher Award 

Bhabha Atomic Research Centre - India

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🎓 Early Academic Pursuits

Dr. Basanta Das began his academic journey with a deep interest in Condensed Matter Physics, which laid the foundation for his research career. His early studies focused on advanced materials and experimental physics, leading him to explore specialized areas such as Hydrogen Storage Materials, Non-Evaporable Getters, and Ultra-High Vacuum Systems. With a strong foundation in both theoretical and experimental physics, he pursued research that would later contribute significantly to the development of vacuum devices and plasma systems.

💼 Professional Endeavors

With 28 years of extensive scientific experience, Dr. Basanta Das has worked on several critical projects involving low-temperature plasma, ion sources, neutron generators, and nano-particle generation. His expertise spans multiple disciplines, particularly in working with complex scientific machines like TOKAMAK, where he has spent a decade studying plasma interactions and developing cutting-edge technology. His role in studying Hydrogen Storage Materials has been particularly impactful in energy research, helping to advance sustainable hydrogen-based energy solutions.

🔬 Contributions and Research Focus

Dr. Das has made significant contributions to multiple fields, including Hydrogen Storage Materials, cold plasma research, and ultra-high vacuum systems. His research has focused on improving particle sources (electron, ion, neutron) and sealed-off vacuum devices, which are essential for various industrial and scientific applications. Notably, his poster presentations at prestigious international conferences, such as the 18th International Symposium on Ion Beam Analysis (2007) and the IEEE Nuclear Science Symposium (2008), have demonstrated his influence in the field. His research on neutron flux measurement and nano-particle generation has provided essential insights into material science and plasma physics.

🌍 Impact and Influence

Dr. Basanta Das's work has had a far-reaching impact on experimental physics, particularly in the development of advanced materials and plasma technologies. His expertise in Hydrogen Storage Materials has influenced research on sustainable energy solutions, while his contributions to ion source technology have advanced applications in medical imaging, nuclear science, and material characterization. His research findings, presented at international conferences, have shaped the understanding of particle interactions with matter and improved neutron generation techniques.

🏆Academic Cites

Dr. Das’s extensive research has led to numerous citations in high-impact journals and conference proceedings. His work on Hydrogen Storage Materials, thin-film interactions, and ultra-high vacuum systems is frequently referenced by researchers worldwide. His collaboration with esteemed scientists on projects such as the selection of proper plasma electrode geometry for penning ion sources and nano-powder generation through electrical explosion of wires has established him as a leading figure in the scientific community.

🌟 Legacy and Future Contributions

As Dr. Basanta Das continues his research, his future contributions are expected to further enhance the understanding of Hydrogen Storage Materials, cold plasma interactions, and vacuum systems. His ongoing efforts in neutron flux measurement and plasma ion source development will play a crucial role in advancing clean energy and experimental physics. His legacy is marked by his dedication to scientific innovation, mentorship, and contributions to the global research community. His influence will continue to inspire future generations of physicists and engineers in the pursuit of advanced material and plasma science research.

📝Hydrogen Storage Materials

Dr. Basanta Das has made significant contributions to the study of Hydrogen Storage Materials, influencing energy research and material science. His experimental work on Hydrogen Storage Materials has improved energy efficiency and material durability. The future of Hydrogen Storage Materials research will continue to benefit from his pioneering efforts in plasma systems and vacuum technology.

Notable Publication


📝Development of compact size Penning ion source for compact neutron generator

Authors: B.K. Das, A. Shyam

Journal: Review of Scientific Instruments

Year: 2008

Citations: 54


📝Low voltage operation of plasma focus

Authors: R. Shukla, S.K. Sharma, P. Banerjee, R. Das, P. Deb, T. Prabahar, B.K. Das, ...

Journal: Review of Scientific Instruments

Year: 2010

Citations: 26


📝Development of hollow anode Penning ion source for laboratory application

Authors: B.K. Das, A. Shyam, R. Das, A.D.P. Rao

Journal: Nuclear Instruments and Methods in Physics Research Section A: Accelerators

Year: 2012

Citations: 25


📝Analysis of electrical explosion of wire systems for the production of nanopowder

Authors: R. Das, B.K. Das, R. Shukla, T. Prabaharan, A. Shyam

Journal: Sadhana

Year: 2012

Citations: 24


📝Improvement of plasma performance with lithium wall conditioning in Aditya tokamak

Authors: M.B. Chowdhuri, R. Manchanda, J. Ghosh, S.B. Bhatt, A. Kumar, B.K. Das, ...

Journal: Plasma Science and Technology

Year: 2013

Citations: 23


📝Characterization of high power microwave radiation by an axially extracted vircator

Authors: R. Verma, R. Shukla, S.K. Sharma, P. Banerjee, R. Das, P. Deb, T. Prabaharan, ...

Journal: IEEE Transactions on Electron Devices

Year: 2013

Citations: 17


📝Measurement of 14 MeV neutron flux from DT neutron generator using activation analysis

Authors: S. Jakhar, C.V.S. Rao, A. Shyam, B. Das

Journal: 2008 IEEE Nuclear Science Symposium Conference Record

Year: 2008

Citations: 14

Mengyuan Guo – Hydrogen Energy and Fuel Cells – Best Researcher Award 

Dr. Mengyuan Guo - Hydrogen Energy and Fuel Cells - Best Researcher Award 

Beijing Huairou Laboratory - China

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🎓 Early Academic Pursuits

Dr. Mengyuan Guo embarked on his academic journey with a focus on materials science and engineering, laying a strong foundation in the principles of solid oxide fuel cells (SOFC) and energy materials. His early academic pursuits were marked by a rigorous exploration of ceramic materials, which culminated in advanced degrees and specialized training that prepared him for a research career in hydrogen energy and fuel cells.

💼 Professional Endeavors

Dr. Guo has established a prominent professional career centered around the development of advanced materials for hydrogen energy applications. His work encompasses research on SOFC/SOEC electrode materials, ceramic-metal heterogeneous sealing materials, and alloy coating materials. He is recognized for his expertise in interface corrosion mechanisms, contributing to the understanding and advancement of fuel cell technologies. Dr. Guo's professional endeavors include collaboration with various academic institutions and industries to enhance the efficiency and reliability of hydrogen energy systems.

🔬 Contributions and Research Focus

Dr. Guo’s research focuses on critical aspects of hydrogen energy and fuel cells, particularly in the areas of electrode materials and sealing technologies. His contributions include the development of innovative silicate glass sealants modified with alumina and feldspar-based compositions, which have significantly improved the performance and longevity of SOFCs. Through his research, Dr. Guo has explored the chemical compatibility of sealing materials and interconnects, providing valuable insights into interface corrosion mechanisms that impact the operational stability of fuel cells.

🌍 Impact and Influence

The impact of Dr. Mengyuan Guo's work extends across the fields of materials science and energy research. His studies on hydrogen energy and fuel cells have influenced both academic research and practical applications in energy technologies. Dr. Guo's findings are critical for improving the performance and reliability of fuel cells, making him a respected figure in the scientific community. His contributions have been recognized through invitations to present at international conferences and collaborations with leading researchers.

🏆Academic Cites

Dr. Guo's research has been extensively cited in peer-reviewed journals, reflecting the significance and relevance of his contributions to the fields of hydrogen energy and fuel cells. His publications in high-impact journals, such as the Journal of European Ceramic Society and International Journal of Hydrogen Energy, underscore the importance of his work in advancing the understanding of materials used in fuel cells. The high citation rates of his studies indicate their influence on ongoing research in the field.

🌟 Legacy and Future Contributions

Looking ahead, Dr. Mengyuan Guo aims to further his research in hydrogen energy and fuel cells, focusing on innovative materials that can enhance efficiency and reduce costs. His future contributions are expected to pave the way for new advancements in fuel cell technologies, solidifying his legacy as a key researcher in this domain. As he continues to mentor emerging scientists and collaborate on impactful projects, Dr. Guo's influence on the future of hydrogen energy and fuel cells will undoubtedly be profound.

📝Hydrogen Energy and Fuel Cells

Dr. Mengyuan Guo’s extensive research and innovation in hydrogen energy and fuel cells have positioned him as a leading figure in the field. His contributions to hydrogen energy and fuel cells technology, particularly in the development of advanced sealing materials and electrode interfaces, are groundbreaking. The future of hydrogen energy and fuel cells looks promising under Dr. Guo's continued leadership and research efforts, as he strives to advance sustainable energy solutions.

Notable Publication


📝Performances of mullite fiber reinforced glass sealing materials applied to high temperature solid oxide fuel cell
Authors: Ge, B., Liu, X., Guo, M., Shen, R., Yang, Z.
Journal: International Journal of Hydrogen Energy
Year: 2024


📝Effect of mullite fiber on the properties of glass composite sealing materials
Authors: Ge, B., Li, J., Liu, X., Chen, W., Yang, Z.
Journal: Ceramics International
Year: 2024


📝Glass-diopside composite sealing material for planar solid oxide fuel cells
Authors: Hu, L., Zhang, R., Guo, M., Yang, Z.
Journal: International Journal of Hydrogen Energy
Year: 2024


📝Investigation of CuxMn3-xO4 coatings for solid oxide fuel cell interconnect applications
Authors: Jin, Y., Hao, W., Guo, M., Xiong, X., Peng, S.
Journal: Ceramics International
Year: 2023


📝Chemical compatibility of Al2O3-added glass sealant with bare and coated interconnect in oxidizing and reducing environments
Authors: Guo, M., Hao, W., Liu, X., Yang, Z., Peng, S.
Journal: Journal of the European Ceramic Society
Year: 2023