Dr. Ali Altuntepe | Hydrogen Energy | Best Researcher Award

Dr. Ali Altuntepe | Hydrogen Energy | Best Researcher Award

Sivas of Science and Technology university, Turkey.

Dr. Ali Altuntepe is a Turkish researcher and materials scientist specializing in experimental condensed matter physics, thin film technology, and two-dimensional materials. With a Ph.D. in Mechanical Engineering, his work focuses on hydrogen storage, graphene synthesis, and solar cell enhancement. He is passionate about integrating nanomaterials in renewable energy applications and continues to contribute significantly to the scientific community through numerous high-impact publications and collaborative projects.

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🎓 Education

Dr. Ali Altuntepe has pursued his entire academic journey in Mechanical Engineering at Niğde Ömer Halisdemir University, where he demonstrated a consistent dedication to advanced research in materials science and energy systems. He recently completed his Ph.D. in Mechanical Engineering (2019–2024) with an outstanding GPA of 9.74/10.00. His doctoral thesis focused on the "Investigation of Hydrogen Storage Potential of Two-Dimensional Materials, Metal Hydrides, and Their Compositions," reflecting his deep engagement with sustainable and cutting-edge energy technologies. Prior to this, he earned his Master’s degree in Mechanical Engineering (2017–2019), achieving a GPA of 90.09/100, with a thesis centered on the "Synthesis of Doped and Pristine Graphene." His academic foundation was laid with a Bachelor's degree in the same field (2012–2017), where he graduated with a GPA of 3.35/4.00. Throughout his academic career, Dr. Altuntepe has cultivated expertise in nanomaterials, hydrogen storage systems, and graphene synthesis, positioning him as a strong contributor to both academic and applied research in clean energy and material innovation.

🧑‍🏫 Experience

Dr. Altuntepe has extensive experience in thin film synthesis and characterization. His work includes growing doped and pristine graphene, investigating 2D materials like MoS₂, WS₂, LiH, and NaH, and applying these materials in PEM fuel cells and solar cells. He has presented at international conferences and co-authored a book chapter on sustainable materials in solar technology.

🔬 Research Interests

Graphene and TMDs (MoS₂, WS₂) synthesis

Hydrogen storage materials

Solar cell enhancement using 2D materials

Thin film deposition techniques (CVD, PVD, E-beam)

Materials characterization (XRD, SEM, Raman, XPS, etc.)

Transparent conductive oxides (TCOs)

Integration of nanomaterials into composite and optoelectronic systems

🏆 Awards & Achievements

Co-authorship in a prestigious Elsevier publication:
Sustainable Materials Solutions for Solar Energy Technologies (2021)

Oral presentations at international conferences including ICSM and MSNG

High citation record with over 20 peer-reviewed journal articles

📚 Selected Publications

☀️ Advanced Solar Cell Materials

1. Boron Doped Graphene and MoS₂-Based Ultra-Thin Schottky Junction Solar Cell

Journal: Optical Materials (May 2025)
DOI: 10.1016/j.optmat.2025.116828
Highlights:

Integrates boron-doped graphene with MoS₂ to form an ultra-thin Schottky junction.

Aims to enhance charge transport and light absorption.

Promising for lightweight and high-efficiency PV applications.

2. Nitrogen Doped Single Layer Graphene for CZTS-Based Thin Film Solar Cells

Journal: Optical Materials (2024)
DOI: 10.1016/j.optmat.2024.115167
Highlights:

Uses nitrogen doping to tune electronic properties of graphene.

Applied in CZTS (Copper Zinc Tin Sulfide) solar cells — known for being earth-abundant and non-toxic.


💨 Hydrogen Storage and Fuel Cells

3. Optimizing Hydrogen Storage and Fuel Cell Performance Using Carbon-Based Materials

Journal: Hydrogen (March 2025)
DOI: 10.3390/hydrogen6020022
Highlights:

Studies effects of surface area and pressure on carbon-based hydrogen storage.

Bridges material design with real-world performance in fuel cells.

4. Hydrogen Storage Capacity of Two-Dimensional MoS₂

Journal: International Journal of Hydrogen Energy (2024)
DOI: 10.1016/j.ijhydene.2023.12.120
Highlights:

Focus on MoS₂ for reversible hydrogen storage.

Explores adsorption behavior on 2D surfaces.

5. Investigating Surface Area and Hydrogen Pressure Effects on LiH and NaH

Journal: Journal of Solid State Chemistry (2024)
DOI: 10.1016/j.jssc.2023.124483
Highlights:

Dives into metal hydrides (LiH and NaH).

Correlates structural properties with storage performance under different pressures.

 

 

Dr. Kyoung-Tae Park | Chemical Engineering | Best Researcher Award

Dr. Kyoung-Tae Park | Chemical Engineering | Best Researcher Award

Korea Institute of industrial Technology, South Korea.

Dr. Kyoung-Tae Park is a senior researcher at the Korea Institute of Industrial Technology, specializing in advanced materials engineering. With a Ph.D. in Green Energy Technology and extensive experience in metallurgy, his research focuses on innovative techniques for metal recycling, thermoelectric materials, and high-performance alloys. Over his career, he has contributed significantly to the fields of materials science, energy technology, and industrial development.

Profile

📚 Education

Dr. Kyoung-Tae Park pursued his academic journey at Chungnam National University (CNU), where he laid a strong foundation in metal and materials engineering. He earned a Bachelor of Science degree in Metal and Materials Engineering from March 2000 to February 2007. Continuing his specialization, he completed a Master of Science in Metal Materials Engineering between March 2008 and February 2010. Subsequently, he achieved his Doctor of Philosophy in Green Energy Technology at the Graduate School of Chungnam National University, from March 2010 to February 2013, focusing on sustainable energy solutions and advanced material applications.

👨‍🌾 Professional Experience

Dr. Kyoung-Tae Park began his career as a Senior Researcher at the Fuel Cell Technology Acquisition Team of POSCO Energy Technology Research Center, where he contributed from February 2013 to November 2013. In February 2013, he joined the Korea Institute of Industrial Technology as a Senior Researcher, where he continues to work, focusing on advanced materials and energy technologies. Additionally, Dr. Park broadened his research expertise through a Visiting Researcher position at the IFW Solid State Physics Institute in Dresden, Germany, from July to September 2015, where he collaborated on cutting-edge solid-state physics projects.

🔬 Research Interests

Advanced metal recycling techniques

Development of thermoelectric materials

High-performance alloys and composites

Nanostructured materials for energy applications

🌟 Awards

Encouragement Award, Poongsan Idea Contest (2010)

Commendation Award, Contribution to Industrial Development of Rare Metals, Incheon (2015)

Best Poster Award, Korean Powder Metallurgy Institute, Fall Meeting (2016)

📑 Publications Top Notes

Titanium deoxidation mechanism probed using an electron beam melting method, Electrochemistry Communications, 2025, 170, 107856. (Kim, H.C.; Kwon, N.; Shin, J.-H.; ... Oh, S.J.; Park, K.-T.) Link

Electrochemical behavior of deoxidation titanium scrap process by induced overpotential molten salt electrolyte, Electrochemistry Communications, 2024, 166, 107780. (Kwon, N.; Kim, H.; Ko, U.J.; ... Shin, J.H.; Park, K.-T.) Link

Synthesis and Characteristics of Mesoporous Copper Cobalt Oxides Using the Inverse Micelle Method Fabricated for Supercapacitors, ACS Omega, 2024, 9(5), pp. 5338–5344. (Heo, S.G.; Park, K.-T.; Oh, S.J.; Seo, S.-J.) Link

Pyrometallurgical eco-recycling for Zn and MnO recovery from spent alkaline and Zn–C batteries, Journal of Material Cycles and Waste Management, 2024, Article in Press, 200801. (Bae, S.U.; Park, J.H.; Park, K.-T.; Shin, J.H.) Link

Extraction of rare earth elements from neodymium (NdFeB) magnet scrap using magnesium halides, Journal of Rare Earths, 2024, Article in Press. (Heo, S.G.; Yang, J.Y.; Oh, S.J.; ... Lee, M.H.; Park, K.-T.) Link