Aug, 31, 2024

Vol.57 No.4

학회 연락처

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  • The Korean Society of Surface Science and Engineering
  • Volume 56(6); 2023
  • Article

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The Korean Society of Surface Science and Engineering 2023;56(6):412-419. Published online: Dec, 28, 2023

음이온 교환막 수전해 적용을 위한 고균일 고내구 코발트 산화물 전극의 제조 및 공정 조건 최적화

  • 이호석a,b, 명신우a, 박준영a, 박언주a, 허성준a, 김남인a, 이재훈a, 정재훈a, 정재엽a, 진송a, 이주영a, 이상호b, 김치호a,*, 최승목a,c,*
    a한국재료연구원 그린수소재료연구실, b부경대학교 화학공학과, c과학기술연합대학원대학교 신소재공학과
초록

Anion exchange membrane electrolysis is considered a promising next-generation hydrogen production technology that can produce low-cost, clean hydrogen. However, anion exchange membrane electrolysis technology is in its early stages of development and requires intensive research on electrodes, which are a key component of the catalyst-system interface. In this study, we optimized the pressure conditions of the hot-pressing process to manufacture cobalt oxide electrodes for the development of a high uniformity and high adhesion electrode production process for the oxygen evolution reaction. As the pressure increased, the reduction of pores within the electrode and increased densification of catalytic particles led to the formation of a uniform electrode surface. The cobalt oxide electrode optimized for pressure conditions exhibited improved catalytic activity and durability. The optimized electrode was used as the anode in an AEMWE single cell, exhibiting a current density of 1.53 A cm-2 at a cell voltage of 1.85 V. In a durability test conducted for 100 h at a constant current density of 500 mA cm-2, it demonstrated excellent durability with a low degradation rate of 15.9 mV kh-1, maintaining 99% of its initial performance.

키워드 Hydrogen production, Anion exchange membrane water electrolysis, Oxygen evolution reaction, Cobalt Oxide, Highly uniform electrode.