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Noble-Metal Nanocrystals with Concave Surfaces: Synthesis and Applications

机译:具有凹面的贵金属纳米晶体:合成与应用

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摘要

Metal nanocrystals with concave surfaces are interesting for a wide variety of applications that are related to catalysis, plasmonics, and surface-enhanced spectroscopy. This interest arises from their high-index facets, surface cavities, and sharp corners/edges. Two major challenges are associated with this novel class of nanocrystals: 1) how to generate a concave surface with negative curvature, which is not favored by thermodynamics owing to its higher energy than the convex counterpart; and 2) how to stabilize the morphology of a nanocrystal with concave structures on the surface. Recently, a number of different procedures have been developed for the synthesis of noble-metal nanocrystals with concave surfaces. This Review provides a brief account of these developments, with the aim of offering new insights into the growth mechanisms. We focus on methods based on two general strategies: 1) site-specific dissolution through etching and galvanic replacement; and 2) directionally controlled overgrowth by facet-selective capping, kinetic control, and template-directed epitaxy. Their enhanced catalytic and electrocatalytic properties are also described.
机译:具有凹面的金属纳米晶体对于与催化,等离激元学和表面增强光谱学有关的广泛应用是令人感兴趣的。这种兴趣来自它们的高折射率刻面,表面空腔和尖角/边缘。与这种新型的纳米晶体有关的两个主要挑战是:1)如何产生具有负曲率的凹面,由于其能量比凸面对应物的能量高,因此热力学不赞成这种方法。 2)如何稳定表面具有凹陷结构的纳米晶体的形态。最近,已经开发出许多用于合成具有凹面的贵金属纳米晶体的不同方法。这篇综述简要介绍了这些发展,旨在为增长机制提供新见解。我们将重点放在基于两种通用策略的方法上:1)通过蚀刻和电流置换实现特定位置的溶解;和2)通过方面选择上限,动力学控制和模板定向外延来定向控制过度生长。还描述了它们增强的催化和电催化性能。

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