State Key Laboratory of Silicon Materials, Department of Materials Science and Engineering, Zhejiang University, Hangzhou, Zhejiang 310027, P. R. China.
Chem Soc Rev. 2012 Dec 21;41(24):8035-49. doi: 10.1039/c2cs35173k.
Bimetallic nanocrystals consisting of two distinct metals such as Pd and Pt are attractive for a wide variety of catalytic and electrocatalytic applications as they can exhibit not only a combination of the properties associated with both metals but also enhancement or synergy due to a strong coupling between the two metals. With Pd as the base metal, many methods have recently been demonstrated for the synthesis of Pd-Pt bimetallic nanocrystals having a wide variety of different structures in the form of alloys, dendrites, core-shells, multi-shells, and monolayers. In this tutorial review, we begin with a brief discussion on the possible structures of Pd-Pt bimetallic nanocrystals, followed by an account of recent progress on synthetic approaches to such nanocrystals with controlled structures, shapes and sizes. In addition to the experimental procedures and mechanistic studies, a number of examples are presented to highlight the use of such bimetallic nanocrystals as catalysts or electrocatalysts for various applications with enhanced performance relative to their monometallic counterparts.
由两种不同金属(如 Pd 和 Pt)组成的双金属纳米晶体在各种催化和电催化应用中很有吸引力,因为它们不仅可以表现出与两种金属相关的特性的组合,而且由于两种金属之间的强耦合还可以增强或协同作用。以 Pd 作为基础金属,最近已经有许多方法被证明可以合成具有各种不同结构的 Pd-Pt 双金属纳米晶体,这些结构的形式有合金、树枝状、核壳、多壳和单层。在本教程综述中,我们首先简要讨论了 Pd-Pt 双金属纳米晶体的可能结构,然后介绍了最近在具有可控结构、形状和尺寸的此类纳米晶体的合成方法方面的进展。除了实验程序和机理研究外,还提出了一些实例来说明这些双金属纳米晶体作为催化剂或电催化剂在各种应用中的使用情况,与它们的单金属对应物相比,其性能得到了增强。