Satya Prakash Padhee | Hydrogen Storage | Young Scientist Award

Dr. Satya Prakash Padhee | Hydrogen Storage | Young Scientist Award

Post-Doc fellow at Korea Institute of Science and Technology, South Korea

Dr. Satya Prakash Padhee is an early-career materials scientist and metallurgist specializing in hydrogen storage materials. With a strong foundation in minerals, metallurgical, and materials engineering, he has contributed significantly to sustainable energy technologies, particularly the synthesis and optimization of TiFe-based alloys for hydrogen storage. He is currently a Postdoctoral Researcher at the Korea Institute of Science and Technology (KIST), working on hydrogen storage alloys and their thermodynamic and kinetic optimization.

Publication ProfileΒ 

Scopus

Orcid

Google Scholar

Educational Background πŸŽ“

  • Ph.D. in Minerals, Metallurgical & Materials Engineering
    Indian Institute of Technology, Bhubaneswar (2022)

    • Specialization: Hydrogen Storage Materials

    • Thesis: Electro-deoxidation process for producing FeTi from low-grade ilmenite

    • Supervisor: Dr. Soobhankar Pati

  • M.Tech in Minerals, Metallurgical & Materials Engineering
    Indian Institute of Technology, Bhubaneswar (2015)

    • Specialization: Solvent Extraction

    • CGPA: 8.7

    • Thesis: Extraction of Ruthenium from high-level liquid waste using ionic liquids

  • B.E. in Mechanical (Manufacturing) Engineering
    Annamalai University, Chidambaram (2013)

    • Specialization: Non-Destructive Testing

    • CGPA: 8.2

    • Thesis: Fatigue life prediction of ZE41A cast magnesium alloy using acoustic emission

Professional Experience πŸ’Ό

  • Postdoctoral Fellow
    Korea Institute of Science and Technology (KIST), Seoul
    (Aug 2022 – Present)

    • Focus on synthesis and development of TiFe-based hydrogen storage alloys

    • Expertise in alloy design, purity control, and thermal treatment

  • Senior Research Fellow
    Indian Institute of Technology Bhubaneswar
    (Dec 2021 – Aug 2022)

    • Designed and fabricated a piezoelectric testing machine

    • Analyzed current-voltage behavior of polymer-based piezoelectrics under load

Research Interests πŸ”¬

  • Room-temperature hydrogen storage materials

  • Fuel cells and renewable energy storage

  • First-principles (DFT-based) calculations using VASP

  • Solvent extraction and electrochemical processes

  • Lithium-ion battery recycling and materials recovery

  • Electrodeposition and corrosion-resistant coatings

Awards and HonorsπŸ†βœ¨

  • MHRD Scholarships for both Ph.D. and M.Tech programs at IIT Bhubaneswar

  • Top 100 Rank in GATE 2013 (Production and Industrial Engineering)

Technical Skills & Tools🧰

  • Alloy synthesis, PCT apparatus fabrication, SEM, XRD, BET, TGA-DSC, AAS, UV spectroscopy

  • Molten salt electro-deoxidation for metal extraction

  • Hydrogen charging-discharging tests

  • Electrodeposition and corrosion testing for fuel cell applications

  • First-principles simulations (VASP), Rietveld analysis

Teaching ExperienceπŸ‘¨β€πŸ«

At IIT Bhubaneswar (as a Teaching Assistant):

  • Undergraduate Labs & Courses: Materials Thermodynamics, Intro to Materials Science

  • Postgraduate Courses: Advanced Thermodynamics & Kinetics, Physical Metallurgy, Materials Characterization, Electrochemical Engineering, Simulation & Modeling

Conclusion🌟

Dr. Satya Prakash Padhee is a promising young researcher whose work bridges fundamental materials science and applied clean energy technologies. His specialization in hydrogen storage alloys, hands-on engineering of testing apparatuses, and expertise in simulation and electrochemistry make him an ideal candidate for prestigious research awards and academic appointments in the field of sustainable materials and energy systems.

Publications πŸ“š

πŸ“˜ 1. Optimizing Hydrogen Storage in TiFe–V Alloys: Influence of Sample Purity and Heat Treatment
πŸ“… June 2025
πŸ“š International Journal of Hydrogen Energy
πŸ”— DOI: 10.1016/j.ijhydene.2025.05.232
✍️ Authors: Satya Prakash Padhee, Kouji Sakaki, Vivek Shukla, Kyubin Hwang, Young Whan Cho, Young-Su Lee


πŸ“˜ 2. Optimizing Hydrogen Storage Pathways in Ti-Al Alloys through Controlled Oxygen Addition
πŸ“… 2024
πŸ“š International Journal of Energy Research
πŸ”— DOI: 10.1155/2024/2216181
✍️ Authors: Vivek Shukla, S.J. Han, T. Ha, Satya Prakash Padhee, J.-Y. Suh, Y.W. Cho, Y.-S. Lee


πŸ“˜ 3. Role of Mn-substitution towards the Enhanced Hydrogen Storage Performance in FeTi
πŸ“… 2022
πŸ“š International Journal of Hydrogen Energy
πŸ”— DOI: 10.1016/j.ijhydene.2022.01.032
✍️ Authors: Satya Prakash Padhee, A. Roy, S. Pati


πŸ“˜ 4. Electro-deoxidation Process for Producing FeTi from Low-Grade Ilmenite: Tailoring Precursor Composition for Hydrogen Storage
πŸ“… 2021
πŸ“š Journal of Sustainable Metallurgy
πŸ”— DOI: 10.1007/s40831-021-00412-9
✍️ Authors: Satya Prakash Padhee, U.K. Chanda, R. Singh, A. Roy, B. Mishra, S. Pati


πŸ“˜ 5. Mechanistic Insights into Efficient Reversible Hydrogen Storage in Ferrotitanium
πŸ“… 2021
πŸ“š International Journal of Hydrogen Energy
πŸ”— DOI: 10.1016/j.ijhydene.2020.09.221
✍️ Authors: Satya Prakash Padhee, A. Roy, S. Pati


πŸ“˜ 6. Electrodeposited Ni–Mo–Cr–P Coatings for AISI 1020 Steel Bipolar Plates
πŸ“… 2020
πŸ“š International Journal of Hydrogen Energy
πŸ”— DOI: 10.1016/j.ijhydene.2020.06.014
✍️ Authors: U.K. Chanda, Satya Prakash Padhee, A.K. Pandey, S. Roy, S. Pati


πŸ“˜ 7. Effect of Cr Content on the Corrosion Resistance of Ni–Cr–P Coatings for PEMFC Metallic Bipolar Plates
πŸ“… 2019
πŸ“š Materials for Renewable and Sustainable Energy
πŸ”— DOI: 10.1007/s40243-019-0158-8
✍️ Authors: U.K. Chanda, Satya Prakash Padhee, A.D. Pathak, S. Roy, S. Pati


Bin Jiang | Hydrogen Energy | Best Researcher Award

Mr. Bin Jiang | Hydrogen Energy | Best Researcher Award

Senior Engineer at State Power Investment Corporation Research Institute (SPICRI), China

Bin Jiang is a Senior Engineer at the State Power Investment Corporation R&D Institute (SPICRI), specializing in hydrogen energy safety and infrastructure research. With a robust portfolio including 14 peer-reviewed publications and 14 invention patents, he has made outstanding contributions to high-pressure hydrogen technology. Bin Jiang played a key role in national hydrogen energy initiatives and independently built China’s first high-pressure hydrogen leakage test facility with pressures exceeding 70 MPa. His research underpins critical safety protocols for hydrogen refueling stations and contributes to national energy safety standards.

Publication ProfileΒ 

Scopus

Educational Background πŸŽ“

Although specific degree information is not provided, Bin Jiang’s achievements strongly indicate an advanced academic background (likely a Master’s or Ph.D.) in engineering disciplines such as:

  • Mechanical Engineering

  • Energy Engineering

  • Hydrogen Technology or related fields

Note: This section can be updated upon disclosure of formal educational credentials.

Professional Experience πŸ’Ό

  • Position: Senior Engineer

  • Institution: State Power Investment Corporation R&D Institute (SPICRI)

  • Experience Highlights:

    • Led 10 national-level research projects, including National Key R&D Programs and Major Special Projects

    • Built and managed China’s first full-scale high-pressure hydrogen leakage testing facility (>70 MPa)

    • Conducted systematic testing on nozzle types and pressure variations to assess hydrogen behavior

    • Contributed to the creation and revision of 3 national group standards

    • Collaborated with Dalian University of Technology and Wuhan University of Technology

    • Completed 2 industry consultancy projects

    • Edited and co-authored technical standards and obtained 2 software copyrights

Research Interests πŸ”¬

  • Primary Fields:

    • Hydrogen Energy

    • Nuclear Energy

  • Specialized Topics:

    • High-pressure hydrogen leakage and diffusion behavior

    • Spontaneous combustion of hydrogen

    • Hydrogen safety engineering

    • Infrastructure design for hydrogen refueling stations

    • Energy systems safety and risk mitigation

Awards and HonorsπŸ†βœ¨

  • Award Nominated: Best Researcher Award (2025)

  • Recognitions:

    • Selected for leadership roles in national research programs

    • Key contributor to hydrogen safety standardization in China

    • Research cited in high-impact journals (SCI, Scopus)

No individual awards are explicitly listed; however, the quality and scope of contributions reflect national-level recognition and industry impact.

Conclusion🌟

Bin Jiang is a leading figure in hydrogen energy research in China, bridging the gap between scientific research and industrial safety. His work directly supports national energy transformation goals by ensuring that hydrogen technologies are safe, scalable, and well-understood. With groundbreaking achievements such as constructing China’s first full-scale high-pressure hydrogen leakage test facility and publishing significant research, Bin Jiang is a critical contributor to the future of clean energy. His nomination for the Best Researcher Award is a testament to his impactful, innovative, and safety-driven contributions.

Publications πŸ“š

Niu, Y., Jiang, B., … Liang, G. (2025). πŸ§ͺ Experimental study on high-pressure hydrogen leakage and diffusion in full-scale hydrogen refueling stations. 🧾 International Journal of Hydrogen Energy.