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Research

Overview

Our laboratory aims to develop sustainable electrochemical energy conversion systems through an integrated approach spanning catalyst design, MEA engineering, and stack development.
We focus on advancing both water electrolysis and fuel cell technologies to realize efficient and carbon-neutral energy solutions.

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water electrolysis

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fuel cell

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 Catalyst  

  • Non-precious metal highly uniform alloy catalyst technology

  • Mass-scale synthesis technology

  • Highly dispersed catalyst slurry technology

  • Catalyst-integrated electrode (direct growth)

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 Membrane Electrode Assembly 

  • Electrical Conductivity Enhancement Technology

  • Formation of a Uniformly Thick Catalyst Layer

  • Enhancing Material Diffusion Technology

  • Interface Control Technology

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 Stack 

  • Design of a uniform material diffusion structure

  • Evaluation techniques for fastening process conditions

  • Real-time stack analysis technology

  • Development of stack operation and control logic

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Energy & Environment Materials Research Division
Korea Institute of Materials Science (KIMS)

Changwon, Republic of Korea.

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