Mr. Amin Hosseini | Energy Awards | Innovative Research Award

Mr. Amin Hosseini | Energy Awards | Innovative Research Award

Mr. Amin Hosseini, University of Isfahan, Iran

Amin Hosseini is a dedicated industrial engineer and researcher specializing in supply chain logistics, data science, and the Internet of Things (IoT), with a strong focus on renewable energy systems. Currently pursuing his M.Sc. in Industrial Engineering at the University of Isfahan, Iran, he has distinguished himself as a top graduate student and is conducting advanced research on designing energy-aware dual-channel renewable fuel supply chain networks under uncertainty. He earned his B.Sc. from Shiraz University of Technology and has since contributed to high-impact journals with publications on agricultural supply chains, Industry 4.0 integration, and supply chain coordination. Beyond his academic achievements, Amin has taken leadership roles as the founder and chair of scientific associations and served as a reviewer for scholarly journals. His technical expertise spans optimization, uncertainty modeling, and simulation tools like Python, GAMS, and AnyLogic. Amin is also active in digital marketing and e-commerce consulting within the education sector and is passionate about sustainable development, strategic thinking, and chess.

Professional Profile:

GOOGLE SCHOLAR

Summary of Suitability for Innovative Research Award: Amin Hosseini

Amin Hosseini stands out as a promising and highly suitable candidate for the Research for Innovative Research Award, based on his exceptional contributions to sustainable logistics, data-driven supply chain design, and integration of Industry 4.0 technologies. Despite currently being a master’s student at the University of Isfahan, his research track record, leadership, and vision exemplify the essence of innovation and forward-thinking necessary for this distinction.

🎓 Education

  • M.Sc. in Industrial Engineering (Logistics & Supply Chain)
    University of Isfahan, Iran (2021–2024)

    • 🏆 Thesis: Design of energy-aware dual-channel renewable bioethanol fuel supply chain network under uncertainty

    • 🥇 Distinguished Graduate Student (Top of Class)

  • B.Sc. in Industrial Engineering
    Shiraz University of Technology, Iran (2016–2021)

💼 Work Experience

  • Digital Marketing Specialist & E-commerce Consultant
    Industrial Engineering Department, Higher Education Institute, Iran

  • 🧠 Researcher in Supply Chain & IoT
    University of Isfahan – Focus on sustainable logistics and renewable energy integration

📚 Academic Achievements & Publications

  • 📖 Published multiple articles in high-impact journals like Supply Chain Management, Computers & Industrial Engineering, and International Journal of Applied Optimization Studies

  • 🧾 Research areas:

    • Industry 4.0 in agriculture

    • Renewable fuel logistics

    • Competitive supply chain coordination

    • Pharmaceutical delivery systems

🏅 Awards & Honors

  • 🥈 2nd Place (Team) & 🥉 3rd Place (Individual) in Regional University Chess Tournament (Iran)

  • 🏅 Distinguished M.Sc. Student in Industrial Engineering, University of Isfahan

  • 🧩 Founder & Chair, Scientific Association – University of Isfahan

  • 🎓 Chair, Scientific Association – Shiraz University of Technology

Publication Top Notes:

Agricultural supply chain planning considering the role of Industry 4.0: Technology assessment approach

CITED:1

Energy-Aware Dual-Channel agricultural supply chain network design under uncertainty

CITED:0

Coordinating Supply Chains in Competitive Environments through Wholesale Price Contracts under Uncertainty

CITED:0

Designing a flexible supply chain network in the pharmaceutical industry with different delivery modes

CITED:0

 

 

 

Mr. Tengfei Cheng | Hydrogen energy | Best Researcher Award

Mr. Tengfei Cheng | Hydrogen energy | Best Researcher Award 

Mr. Tengfei Cheng, Hefei General Machinery Research Institute Co., Ltd, China

Tengfei Cheng is an engineer specializing in materials science and engineering, currently working in the Basic Research Department of Pressure Vessel and Pipeline Technology at Hefei General Machinery Research Institute, China. He previously served as an assistant engineer at the New Materials Research Center of Yunnan Innovation Institute of Beijing University of Aeronautics and Astronautics. He holds both a Master’s and a Bachelor’s degree in Materials Science and Engineering from Shanghai University. His research focuses on hydrogen storage materials, lithium-sulfur batteries, and alloy development, with multiple publications in high-impact journals. He has been awarded research funding for projects related to hydrogen storage system design and high-entropy alloys.

Professional Profile:

ORCID

SCOPUS

Summary of Suitability for Best Researcher Award – Tengfei Cheng

Tengfei Cheng is a highly qualified candidate for the Best Researcher Award due to his outstanding contributions to materials science, energy storage, and hydrogen storage technology. His work demonstrates a strong academic background, impactful research output, and leadership in funded projects.

🔬 Education:

🎓 Master’s Degree (Materials Science and Engineering) – Shanghai University, China (2018-2021)
🎓 Bachelor’s Degree (Materials Science and Engineering) – Shanghai University, China (2014-2018)

💼 Work Experience:

👨‍💻 Engineer – Hefei General Machinery Research Institute, China (2021-Present)
🔬 Assistant Engineer – Yunnan Innovation Institute of Beijing University of Aeronautics and Astronautics, China (2021)

🏆 Awards & Research Grants:

💡 Design and Safety Assessment Technology of High Density Adaptive Solid State Hydrogen Storage System – China National Machinery Industry Corporation (2024-2027)
🔬 Research on Uniformization Preparation and Hydrogen Storage Properties of Titanium-Based High Entropy Alloys – Hefei General Machinery Research Institute (2023-2025)

📚 Notable Publications:

🔋 Lithium-Sulfur Batteries: Research on boosting polysulfide conversion using topological insulator heterojunctions
🔬 Hydrogen Storage Materials: Review on severe plastic deformation for high-pressure torsion
Li-Ion Batteries: Functionalized polyethylene separators for fast charging
🛠 Materials Science: Study on Al-Cu-Mg aluminum alloy using molecular dynamics simulation

Publication Top Notes:

Enhanced Lithium Polysulfide Conversion via the Second Current Collector Based on Multitransition-Metal-Phosphides for Li–S Batteries

Thiol-assisted regulated electronic structure of ultrafine Pd-based catalyst for superior formic acid electrooxidation performances

Topological Insulator Heterojunction with Electric Dipole Domain to Boost Polysulfide Conversion in Lithium‐Sulfur Batteries

Functionalized Polyethylene Separators with Efficient Li-Ion Transport Rate for Fast-Charging Li-Ion Batteries

Study on the Microstructure and Mechanical Properties of Al–Cu–Mg Aluminum Alloy Based on Molecular Dynamics Simulation

Effects of the corrosion mechanism evolution of low silicon-cast aluminium alloys in service