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Stabilization of Exposed Metal Nanocrystals in High‐Temperature Heterogeneous Catalysis

Zhijie Zhu, Kai Feng, Chaoran Li, Rui Tang, Mengqi Xiao, Rui Song, Di Yang, Binhang Yan, Le He

2021Advanced Materials46 citationsDOI

Abstract

Abstract Colloidal metal nanocrystals with uniform sizes, shapes, compositions, and architectures are ideal building blocks for constructing heterogeneous catalysts with well‐defined characteristics toward the investigation of accurate structure–property relationships and better understanding of catalytic mechanism. However, their applications in high‐temperature heterogeneous catalysis are often restricted by the difficulty in maintaining the high metal dispersity and easy accessibility to active sites under harsh operating conditions. Here, a partial‐oxide‐coating strategy is proposed to stabilize metal nanocrystals against sintering and meanwhile enable an effective exposure of active sites. As a proof‐of‐concept, controlled partial silica coating of colloidally prepared Pd 0.82 Ni 0.18 nanocrystals with the size of 8 nm is demonstrated. This partially coated catalyst exhibits excellent activity, selectivity, and stability, outperforming its counterparts with fully coated and supported structures, in reverse water gas shift (RWGS) catalysis particularly at high operating temperatures. This study opens a new avenue for the exploration of colloidal metal nanocrystals in high‐temperature heterogeneous catalysis.

Topics & Concepts

Materials scienceNanocrystalCatalysisDispersitySinteringNanotechnologyCoatingMetalChemical engineeringHeterogeneous catalysisColloidOxideOrganic chemistryMetallurgyPolymer chemistryChemistryEngineeringCatalytic Processes in Materials ScienceNanomaterials for catalytic reactionsNanocluster Synthesis and Applications
Stabilization of Exposed Metal Nanocrystals in High‐Temperature Heterogeneous Catalysis | Litcius