Revisit to Grain Boundary Effect in Pt Nanocrystals toward the Oxygen Electroreduction Reaction

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초록

The effect of catalytic surface defects in the oxygen reduction reaction (ORR) has been extensively studied to enhance the performance of proton-exchange-membrane fuel cells. Platinum (Pt)-based nanocatalysts have been used to overcome the poor performance of ORR, and Sabatier-type activity plots have been used to identify the optimal adsorption properties for ORR intermediates on the catalytic surface. Grain boundaries (GBs) within the nanostructures have been identified as the optimal active sites for ORR due to their reasonable coordination number and high oxygen residence time. However, oxidation of Pt atoms exposed at GB sites and leaching of non-noble metals from bimetallic Pt alloys have been identified as the "Achilles Heel" of GB-containing nanocatalysts. In this concept, we revisit the effect of GBs on nanocatalysts, summarize the mechanism of GBs towards ORR, and suggest outlooks for improving ORR for future design of nanocatalysts.

키워드

electrocatalysis; grain boundary; oxygen reduction reaction; platinum; reaction mechanism; REDUCTION REACTION; PLATINUM; ELECTROCATALYSTS; CATALYSTS; SURFACES
제목
Revisit to Grain Boundary Effect in Pt Nanocrystals toward the Oxygen Electroreduction Reaction
저자
Kabiraz, Mrinal Kanti; Choi, Sang-Il
DOI
10.1002/cctc.202300454
발행일
2023-06-22
유형
Article
저널명
ChemCatChem
권
15
호
12