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胶体法制备的金属纳米颗粒催化剂中封端配体的作用和命运

The role and fate of capping ligands in colloidally prepared metal nanoparticle catalysts.

作者信息

Rossi Liane M, Fiorio Jhonatan L, Garcia Marco A S, Ferraz Camila P

机构信息

Departamento de Química Fundamental, Instituto de Química, Universidade de São Paulo, Av. Prof. Lineu Prestes, 748, 05508-000, São Paulo, SP, Brazil.

出版信息

Dalton Trans. 2018 May 1;47(17):5889-5915. doi: 10.1039/c7dt04728b.

Abstract

Metal nanoparticles have received intense scientific attention in the field of catalysis. Precise engineering of nanomaterials' size, shape and surface composition, including adsorbed capping ligands, is of utmost importance to control activity and selectivity, and distinguish colloidally prepared metal nanoparticle catalysts from traditional heterogeneous catalysts. The interface between the material and the reaction medium is where the key interactions occur; therefore, catalysis occurs under the influence of capping ligands. In this Perspective review, we focus on the choice of capping ligands (or stabilizing agents), and their role and fate in different steps from preparation to catalysis. Evaluating the influence of the ligands on the catalytic response is not trivial, but the literature provides examples where the ligands adsorbed on the nanoparticle surface dramatically change the activity and selectivity for a particular reaction, while acting either as a dynamic shell or a passivation coating. Steric and electronic effects resulting from the presence of adsorbed ligands have been proposed to influence the catalytic properties. Attempts to remove the capping ligands are discussed, even though they are not always successful or even necessary. Finally, we outline our personal understanding and perspectives on the use of ligands or functionalized supports to tune the activity and selectivity of supported metal nanoparticles.

摘要

金属纳米粒子在催化领域受到了科学界的广泛关注。对纳米材料的尺寸、形状和表面组成(包括吸附的封端配体)进行精确设计,对于控制活性和选择性,以及区分胶体法制备的金属纳米粒子催化剂与传统多相催化剂至关重要。材料与反应介质之间的界面是关键相互作用发生的地方;因此,催化作用是在封端配体的影响下发生的。在这篇展望性综述中,我们重点关注封端配体(或稳定剂)的选择,以及它们在从制备到催化的不同步骤中的作用和归宿。评估配体对催化响应的影响并非易事,但文献中提供了一些例子,表明吸附在纳米粒子表面的配体在作为动态壳层或钝化涂层时,会显著改变特定反应的活性和选择性。已有人提出,吸附配体的存在所产生的空间效应和电子效应会影响催化性能。文中还讨论了去除封端配体的尝试,尽管这些尝试并非总是成功,甚至也并非总是必要的。最后,我们概述了我们个人对于使用配体或功能化载体来调节负载型金属纳米粒子的活性和选择性的理解与观点。

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