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一种过渡金属纳米颗粒自组装的机制。

A mechanism for transition-metal nanoparticle self-assembly.

作者信息

Besson Claire, Finney Eric E, Finke Richard G

机构信息

Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523, USA.

出版信息

J Am Chem Soc. 2005 Jun 8;127(22):8179-84. doi: 10.1021/ja0504439.

Abstract

The four-step mechanism by which transition-metal nanoclusters or bulk-metal films self-assemble from metal salts under reductive conditions has been discovered. The presence of two autocatalytic steps in the same reaction scheme--double autocatalysis--is the key to the sharp "turn-on" feature after an induction period observed in the signature kinetic curves. Predictions of the new mechanism that are tested experimentally include the following: that low concentrations and high temperatures will favor nanoclusters over bulk-metal film formation; that bulk-metal is formed in some, if not many, literature syntheses reporting only Pt(0) nanoclusters; and that added ligands are one key to turning on the new mechanism. Particle-size-dependent metal-ligand bond dissociation energies are another implication from this mechanistic work.

摘要

已经发现了过渡金属纳米团簇或块状金属膜在还原条件下从金属盐自组装的四步机制。在同一反应体系中存在两个自催化步骤——双重自催化——是在特征动力学曲线中观察到的诱导期后出现急剧“开启”特征的关键。通过实验测试的新机制的预测包括:低浓度和高温有利于形成纳米团簇而非块状金属膜;在一些(如果不是许多)仅报道Pt(0)纳米团簇的文献合成中形成了块状金属;添加配体是开启新机制的关键之一。粒径依赖性金属-配体键解离能是这项机理研究工作的另一个启示。

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