Activity-Stability Relationship in Au@Pt Nanoparticles for Electrocatalysis

  • Chung, Dong Young
  • Park, Subin
  • Lee, Hyeonju
  • Kim, Hyungjun
  • Chung, Young-Hoon
  • ... Yu, Seung-Ho
  • 외 9명
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초록

Despite breakthroughs in the activity of electrocatalysts for the oxygen reduction reaction (ORR), the development of nanoscale ORR electrocatalysts is still hindered by their instability. Here, to bridge the functional link between activity and stability, well-controlled Au@Pt (core@shell) nanoparticles are investigated. In situ monitoring of atomic dissolution and physicochemical analysis in conjunction with theoretical calculations reveal that the atomic-level stability of Au@Pt nanoparticle is attributed to the low surface coverage of OH and oxide on Pt, balancing between strain and ligand effect of Au at the interface. Considering the relationships in activity-stability-oxophilicity, the functional links between activity and stability in the ORR are discussed, and the regulation of oxophilicity is suggested as a guideline for designing highly active and durable electrocatalysts for fuel cell applications.

키워드

OXYGEN REDUCTION REACTIONCORE-SHELLEVOLUTION REACTIONCATALYTIC-ACTIVITYSURFACE-STRUCTUREDISSOLUTIONSTRAINALLOYTRENDSIDENTIFICATION
제목
Activity-Stability Relationship in Au@Pt Nanoparticles for Electrocatalysis
저자
Chung, Dong YoungPark, SubinLee, HyeonjuKim, HyungjunChung, Young-HoonYoo, Ji MunAhn, DocheonYu, Seung-HoLee, Kug-SeungAhmadi, MandiJu, HuanxinAbruna, Hector D.Yoo, Sung JongMun, Bongjin SimonSung, Yung-Eun
DOI
10.1021/acsenergylett.0c01507
발행일
2020-09-11
유형
Article
저널명
ACS Energy Letters
5
9
페이지
2827 ~ 2834