MEMS Lab Research Facility

Sangmyung University

Multiscale Energy Materials & Systems Laboratory

Pioneering convergent research in water electrolysis, fuel cells, ion exchange membranes, and AI-driven energy conversion device performance prediction.

What We Do

Research

MEMS Lab conducts convergent research across energy conversion and separation technologies, including water electrolysis & fuel cell catalyst layers, ion exchange membranes, electrochemical processes, and AI/ML-based performance prediction.

Water Electrolysis & Fuel Cell Catalyst Layer Research

Water Electrolysis & Fuel Cell Catalyst Layer Research

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AI/ML-Based Energy Conversion Device Prediction

AI/ML-Based Energy Conversion Device Prediction

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Ion Exchange Membrane Development

Ion Exchange Membrane Development

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Electrochemical Ion Recovery & Removal Processes

Electrochemical Ion Recovery & Removal Processes

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Latest Research

Recent Publications

Systematic Optimization of AEM Water Electrolysis Operating Conditions Utilizing Triazine-Based PFAEM for Enhanced Practical Performance

Jong-Hyeok Park, Tae-Seok Jeon, Seung-Kwon Kim, Yuna Seo, Jihyeon Kim, Chiho Kim, Minjeong Park, Song Jin, Jooyoung Lee, Sung Mook Choi and Jin-Soo Park

International Journal of Energy Research|Vol. 2026, pp. 1–13|DOI: 10.1155/er/1207469
2026

Performance Evaluation of Domestic and Foreign Ion-Exchange Membranes in Electrodialysis for Wastewater Reuse

Min-Ji Lee, Hong-Suck Kim, Ji-Yeon Kim and Jin-Soo Park

KSWT Journal of Water Treatment|Vol. 34(4), pp. 153-162|DOI: 10.17640/KSWST.2026.34.4.163
2026

Decoupling Solvent Effects: Perfluorinated Sulfonic Acid Structure and Catalyst Layer Stability in PEM Water Electrolysis

Jong-Hyeok Park and Jin-Soo Park

Membranes|Vol. 16(1), pp. 22|DOI: 10.3390/membranes16010022
2026

Toward Scalable and Robust Diffusio-Osmotic Membranes for Sustainable Salinity Gradient Energy Harvesting

Jin-Soo Park

Applied Chemistry for Engineering|Vol. 36, pp. 381-390|DOI: 10.14478/ace.2025.1042
2025

Solvent-driven morphological and electrochemical enhancements in catalyst layers for proton exchange membrane water electrolysis

Jong-Hyeok Park, Jiyoung Heo, Hyun S. Park and Jin-Soo Park

Journal of Power Sources|DOI: 10.1016/j.jpowsour.2025.238180
2025

Latest Updates

News & Notice

2026Publication

Systematic Optimization of AEM Water Electrolysis Operating Conditions Utilizing Triazine-Based PFAEM for Enhanced Practical Performance

International Journal of Energy Research

2026Publication

Performance Evaluation of Domestic and Foreign Ion-Exchange Membranes in Electrodialysis for Wastewater Reuse

KSWT Journal of Water Treatment

2026Publication

Decoupling Solvent Effects: Perfluorinated Sulfonic Acid Structure and Catalyst Layer Stability in PEM Water Electrolysis

Membranes

2026.02Award

Best Poster Presentation Award

GIST Ertl Center

2026.01Award

Best Poster Presentation Award

대한화학회 환경에너지 분과

2025Publication

Toward Scalable and Robust Diffusio-Osmotic Membranes for Sustainable Salinity Gradient Energy Harvesting

Applied Chemistry for Engineering