Hydrogel protection strategy to stabilize water-splitting photoelectrodes

  • JEIWAN TAN; 
  • ByungJun Kang; 
  • Kyungmin Kim; 
  • 강돈영; 
  • Hyungsoo Lee; 
  • 외 4명
Citations

WEB OF SCIENCE

24
Citations

SCOPUS

151

초록

Photoelectrochemical water splitting is an attractive solar-to-hydrogen pathway. However, the lifetime of photoelectrochemical devices is hampered by severe photocorrosion of semiconductors and instability of co-catalysts. Here we report a strategy for stabilizing photoelectrochemical devices that use a polyacrylamide hydrogel as a highly permeable and transparent device-on-top protector. A hydrogel-protected Sb2Se3 photocathode exhibits stability over 100?h, maintaining ~70% of the initial photocurrent, and the degradation rate gradually decreases to the saturation level. The structural stability of a Pt/TiO2/Sb2Se3 photocathode remains unchanged beyond this duration, and effective bubble escape is ensured through the micro gas tunnel formed in the hydrogel to achieve a mechanically stable protector. We demonstrate the versatility of the device-on-top hydrogel protector under a wide electrolyte pH range and by using a SnS photocathode and a BiVO4 photoanode with ~500?h of lifetime.

키워드

Artificial photosynthesis; Hydrogen fuel; Photocatalysis
제목
Hydrogel protection strategy to stabilize water-splitting photoelectrodes
저자
JEIWAN TAN; ByungJun Kang; Kyungmin Kim; 강돈영; Hyungsoo Lee; sunihl ma; gyumin Jang; Hyungsuk Lee; Joo Ho Moon
DOI
10.1038/s41560-022-01042-5
발행일
2022-06
저널명
Nature Energy
권
7
호
6
페이지
537 ~ 547