In Situ Strain Evolution on Pt Nanoparticles during Hydrogen Peroxide Decomposition

  • Choi, Sungwook
  • Chung, Myungwoo
  • Kim, Dongjin
  • Kim, Sungwon
  • Yun, Kyuseok
  • ... Kim, Hyunjung
  • 외 7명
Citations

WEB OF SCIENCE

24
Citations

SCOPUS

24

초록

Fundamental understanding of structural changes during catalytic reactions is crucial to understanding the underlying mechanisms and optimizing efficiencies. Surface energy and related catalytic mechanisms are widely studied. However, the catalyst lattice deformation induced by catalytic processes is not well understood. Here, we study the strain in an individual platinum (Pt) nanoparticle (NP) using Bragg coherent diffraction imaging under in situ oxidation and reduction reactions. When Pt NPs are exposed to H2O2, a typical oxidizer and an intermediate during the oxygen reduction reaction process, alternating overall strain distribution near the surface and inside the NP is observed at the (111) Bragg reflection. In contrast, relatively insignificant changes appear in the (200) reflection. Density functional theory calculations are employed to rationalize the anisotropic lattice strain in terms of induced stress by H2O2 adsorption and decomposition on the Pt NP surface. Our study provides deeper insight into the activity-structure relationship in this system.

키워드

Bragg coherent diffraction imagingstrain3D imagingplatinum nanoparticleoxygen reduction reactionOXYGEN REDUCTION REACTIONPLATINUMSURFACEPT(111)H2O2ELECTROCHEMISTRYADSORPTIONOXIDATION
제목
In Situ Strain Evolution on Pt Nanoparticles during Hydrogen Peroxide Decomposition
저자
Choi, SungwookChung, MyungwooKim, DongjinKim, SungwonYun, KyuseokCha, WonsukHarder, RossKawaguchi, TomoyaLiu, YihuaUlvestad, AndrewYou, HoydooSong, Mee KyungKim, Hyunjung
DOI
10.1021/acs.nanolett.0c03005
발행일
2020-12-09
유형
Article
저널명
Nano Letters
20
12
페이지
8541 ~ 8548