High-performance bifunctional alkaline water-splitting textile electrodes using monolayer-enhanced chemical reduction of integrated electrocatalysts

  • Mo, Jeongmin; 
  • Kim, Hyaemin; 
  • Kim, Jae Min; 
  • Choi, Wondo; 
  • Lyu, Jaesung; 
  • ... Cho, Jinhan; 
  • 외 11명
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초록

Bifunctional alkaline water-splitting electrodes utilizing non-noble metal electrocatalysts for hydrogen and oxygen evolution reactions (HER and OER) offer significant advantages in simplicity and cost-effectiveness. However, achieving high efficiency and stability for both reactions remains a critical challenge. Here, we introduce a novel strategy to develop high-performance bifunctional electrodes. This involves electroplating Ni on textiles embedded with CuxS nanoparticles, followed by electrodepositing NixPy on Ni-coated surface. Subsequently, amine-functionalized molecules are assembled onto NixPy electrodes, creating an integrated structure that reduces overpotentials by inducing oxygen/phosphorous vacancies and superaerophobicity. The resulting electrodes exhibit outstanding catalytic performance with overpotentials of 50 mV at 10 mA cm- 2 for HER and 250 mV at 50 mA cm- 2 for OER, and exceptional durability, which significantly surpasses both previously reported bifunctional alkaline electrodes. Moreover, full-cell electrodes maintained stability for over 3200 h at extremely high current densities of 1000-4000 mA cm- 2.

키워드

Hydrogen evolution reaction; Oxygen evolution reaction; Bifunctional alkaline water splitting; Monolayer assembly; Nickel phosphide; NICKEL PHOSPHIDE; EVOLUTION; NANOCRYSTALS; HYDROXIDE; SITES
제목
High-performance bifunctional alkaline water-splitting textile electrodes using monolayer-enhanced chemical reduction of integrated electrocatalysts
저자
Mo, Jeongmin; Kim, Hyaemin; Kim, Jae Min; Choi, Wondo; Lyu, Jaesung; Kim, Beomjune; Seo, Minseo; Jeong, Taeyoung; Kim, Jong Hun; Moon, Jun Hyuk; Chung, Yoon Jang; Kim, Hyeong Jun; Park, Jinho; Kim, Jung Kyu; Kim, Myeongjin; Back, Seoin; Cho, Jinhan
DOI
10.1016/j.cej.2026.179459
발행일
2026-10-01
유형
Article
저널명
Chemical Engineering Journal
권
545