Structure-controlled graphene electrocatalysts for high-performance H2O2 production

  • Lee, Kyungbin
  • Lim, Jeonghoon
  • Lee, Michael J.
  • Ryu, Kun
  • Lee, Hoyoung
  • ... Ju, Hyunchul
  • 외 6명
Citations

WEB OF SCIENCE

134
Citations

SCOPUS

141

초록

Metal-free carbon materials have emerged as cost-effective and high-performance catalysts for the production of hydrogen peroxide (H2O2) through the two-electron oxygen reduction reaction (ORR). Here, we show that 3D crumpled graphene with controlled oxygen and defect configurations significantly improves the electrocatalytic production of H2O2. The crumpled graphene electrocatalyst with optimal defect structures and oxygen functional groups exhibits outstanding H2O2 selectivity of 92-100% in a wide potential window of 0.05-0.7 V vs. reversible hydrogen electrode (RHE) and a high mass activity of 158 A g(-1) at 0.65 V vs. RHE in alkaline media. In addition, the crumpled graphene catalyst showed an excellent H2O2 production rate of 473.9 mmol gcat(-1) h(-1) and stability over 46 h at 0.4 V vs. RHE. Moreover, density functional theory calculations revealed the role of the functional groups and defect sites in the two-electron ORR pathway through the scaling relation between OOH and O adsorption strengths. These results establish a structure-mechanism-performance relationship of functionalized carbon catalysts for the effective production of H2O2.

키워드

HYDROGEN-PEROXIDEOXYGEN REDUCTIONELECTROCHEMICAL SYNTHESISSEAWATERFUELSELECTIVITYGENERATIONEFFICIENCYCATALYSTSWATER
제목
Structure-controlled graphene electrocatalysts for high-performance H2O2 production
저자
Lee, KyungbinLim, JeonghoonLee, Michael J.Ryu, KunLee, HoyoungKim, Jin YoungJu, HyunchulCho, Hyun-SeokKim, Byung-HyunHatzell, Marta C.Kang, JoonheeLee, Seung Woo
DOI
10.1039/d2ee00548d
발행일
2022-07-13
유형
Article
저널명
Energy and Environmental Sciences
15
7
페이지
2858 ~ 2866