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利用表面成分和能量来控制四面体或八面体高指数晶面纳米结构的形成。

Using Surface Composition and Energy to Control the Formation of Either Tetrahexahedral or Hexoctahedral High-Index Facet Nanostructures.

作者信息

Ye Zihao, Shen Bo, Kang Dohun, Huang Jin, Wang Zhe, Wahl Carolin B, Shin Donghoon, Huang Liliang, Shen Jiahong, Wolverton Christopher M, Mirkin Chad A

机构信息

Department of Chemistry, Northwestern University, Evanston, Illinois 60208, United States.

International Institute for Nanotechnology, Evanston, Illinois 60208, United States.

出版信息

J Am Chem Soc. 2024 May 15;146(19):13519-13526. doi: 10.1021/jacs.4c03088. Epub 2024 May 3.

Abstract

High-index facet nanoparticles with structurally complex shapes, such as tetrahexahedron (THH) and hexoctahedron (HOH), represent a class of materials that are important for catalysis, and the study of them provides a fundamental understanding of the relationship between surface structures and catalytic properties. However, the high surface energies render them thermodynamically unfavorable compared to low-index facets, thereby making their syntheses challenging. Herein, we report a method to control the shape of high-index facet Cu nanoparticles (either THH with {210} facets or HOH with {421} facets) by tuning the facet surface energy with trace amounts of Te atoms. Density functional theory (DFT) calculations reveal that the density of Te atoms on Cu nanoparticles can change the relative stability of the high-index facets associated with either the THH or HOH structures. By controlling the annealing conditions and the rate of Te dealloying from CuTe nanoparticles, the surface density of Te atoms can be deliberately adjusted, which can be used to force the formation of either THH (higher surface Te density) or HOH (lower surface Te density) nanoparticles.

摘要

具有结构复杂形状的高指数晶面纳米颗粒,如四面体(THH)和八面体(HOH),是一类对催化很重要的材料,对它们的研究有助于从根本上理解表面结构与催化性能之间的关系。然而,与低指数晶面相比,高表面能使得它们在热力学上不稳定,从而使其合成具有挑战性。在此,我们报告一种通过用痕量Te原子调节晶面表面能来控制高指数晶面Cu纳米颗粒(具有{210}晶面的THH或具有{421}晶面的HOH)形状的方法。密度泛函理论(DFT)计算表明,Cu纳米颗粒上Te原子的密度可以改变与THH或HOH结构相关的高指数晶面的相对稳定性。通过控制退火条件和Te从CuTe纳米颗粒中脱合金的速率,可以有意地调节Te原子的表面密度,这可用于促使形成THH(较高表面Te密度)或HOH(较低表面Te密度)纳米颗粒。

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