Understanding Alkali Contamination in Colloidal Nanomaterials to Unlock Grain Boundary Impurity Engineering

  • Kim, Se-Ho
  • Yoo, Su-Hyun
  • Chakraborty, Poulami
  • Jeong, Jiwon
  • Lim, Joohyun
  • 외 8명
Citations

WEB OF SCIENCE

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초록

Metal nanogels combine a large surface area, a high structural stability, and a high catalytic activity toward a variety of chemical reactions. Their performance is underpinned by the atomic-level distribution of their constituents, yet analyzing their subnanoscale structure and composition to guide property optimization remains extremely challenging. Here, we synthesized Pd nanogels using a conventional wet chemistry route, and a near-atomic-scale analysis reveals that impurities from the reactants (Na and K) are integrated into the grain boundaries of the poly crystalline gel, typically loci of high catalytic activity. We demonstrate that the level of impurities is controlled by the reaction condition. Based on ab initio calculations, we provide a detailed mechanism to explain how surface-bound impurities become trapped at grain boundaries that form as the particles coalesce during synthesis, possibly facilitating their decohesion. If controlled, impurity integration into grain boundaries may offer opportunities for designing new nanogels.

키워드

ATOM-PROBEHIGH-PERFORMANCEAEROGELSGROWTHSEGREGATIONREDUCTIONPDELECTROCATALYSTSNANOPARTICLESCHEMISTRY
제목
Understanding Alkali Contamination in Colloidal Nanomaterials to Unlock Grain Boundary Impurity Engineering
저자
Kim, Se-HoYoo, Su-HyunChakraborty, PoulamiJeong, JiwonLim, JoohyunEl-Zoka, Ayman A.Zhou, XuyangStephenson, Leigh T.Hickel, TilmannNeugebauer, JoergScheu, ChristinaTodorova, MiraGault, Baptiste
DOI
10.1021/jacs.1c11680
발행일
2022-01-19
유형
Article
저널명
Journal of the American Chemical Society
144
2
페이지
987 ~ 994