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原子精确的金纳米团簇作为新型模型催化剂。

Atomically precise gold nanoclusters as new model catalysts.

机构信息

Department of Chemistry, Carnegie Mellon University, 4400 Fifth Avenue, Pittsburgh, PA 15213, USA.

出版信息

Acc Chem Res. 2013 Aug 20;46(8):1749-58. doi: 10.1021/ar300213z. Epub 2013 Mar 27.

Abstract

Many industrial catalysts involve nanoscale metal particles (typically 1-100 nm), and understanding their behavior at the molecular level is a major goal in heterogeneous catalyst research. However, conventional nanocatalysts have a nonuniform particle size distribution, while catalytic activity of nanoparticles is size dependent. This makes it difficult to relate the observed catalytic performance, which represents the average of all particle sizes, to the structure and intrinsic properties of individual catalyst particles. To overcome this obstacle, catalysts with well-defined particle size are highly desirable. In recent years, researchers have made remarkable advances in solution-phase synthesis of atomically precise nanoclusters, notably thiolate-protected gold nanoclusters. Such nanoclusters are composed of a precise number of metal atoms (n) and of ligands (m), denoted as Aun(SR)m, with n ranging up to a few hundred atoms (equivalent size up to 2-3 nm). These protected nanoclusters are well-defined to the atomic level (i.e., to the point of molecular purity), rather than defined based on size as in conventional nanoparticle synthesis. The Aun(SR)m nanoclusters are particularly robust under ambient or thermal conditions (<200 °C). In this Account, we introduce Aun(SR)m nanoclusters as a new, promising class of model catalyst. Research on the catalytic application of Aun(SR)m nanoclusters is still in its infancy, but we use Au₂₅(SR)₁₈ as an example to illustrate the promising catalytic properties of Aun(SR)m nanoclusters. Compared with conventional metallic nanoparticle catalysts, Aun(SR)m nanoclusters possess several distinct features. First of all, while gold nanoparticles typically adopt a face-centered cubic (fcc) structure, Aun(SR)m nanoclusters (<2 nm) tend to adopt different atom-packing structures; for example, Au₂₅(SR)₁₈ (1 nm metal core, Au atomic center to center distance) has an icosahedral structure. Secondly, their ultrasmall size induces strong electron energy quantization, as opposed to the continuous conduction band in metallic gold nanoparticles or bulk gold. Thus, nanoclusters become semiconductors and possess a sizable bandgap (e.g., ~1.3 eV for Au₂₅(SR)₁₈). In addition, Aun(SR)m can be doped with a single atom of other metals, which is of great interest for catalysis, because the catalytic properties of nanoclusters can be truly tuned on an atom-by-atom basis. Overall, atomically precise Aun(SR)m nanoclusters are expected to become a promising class of model catalysts. These well-defined nanoclusters will provide new opportunities for achieving fundamental understanding of metal nanocatalysis, such as insight into size dependence and deep understanding of molecular activation, active centers, and catalytic mechanisms through correlation of behavior with the structures of nanoclusters. Future research on atomically precise nanocluster catalysts will contribute to the fundamental understanding of catalysis and to the new design of highly selective catalysts for specific chemical processes.

摘要

许多工业催化剂涉及纳米级金属颗粒(通常为 1-100nm),了解它们在分子水平上的行为是多相催化剂研究的主要目标。然而,传统的纳米催化剂具有不均匀的粒径分布,而纳米颗粒的催化活性与粒径有关。这使得难以将观察到的催化性能(代表所有粒径的平均值)与单个催化剂颗粒的结构和固有性质联系起来。为了克服这一障碍,具有明确定义粒径的催化剂是非常理想的。近年来,研究人员在原子精确纳米团簇的溶液相合成方面取得了显著进展,特别是硫醇保护的金纳米团簇。这些纳米团簇由精确数量的金属原子(n)和配体(m)组成,记为 Aun(SR)m,其中 n 高达数百个原子(等效尺寸高达 2-3nm)。这些受保护的纳米团簇在原子水平上具有明确的定义(即达到分子纯度),而不是像传统的纳米颗粒合成那样基于尺寸来定义。在环境或热条件下(<200°C),Aun(SR)m 纳米团簇特别稳定。在本报告中,我们将 Aun(SR)m 纳米团簇作为一种新的、有前途的模型催化剂类别进行介绍。Aun(SR)m 纳米团簇的催化应用研究仍处于起步阶段,但我们以 Au₂₅(SR)₁₈ 为例来说明 Aun(SR)m 纳米团簇的有前途的催化性能。与传统的金属纳米颗粒催化剂相比,Aun(SR)m 纳米团簇具有几个明显的特征。首先,虽然金纳米颗粒通常采用面心立方(fcc)结构,但 Aun(SR)m 纳米团簇(<2nm)往往采用不同的原子堆积结构;例如,Au₂₅(SR)₁₈(1nm 金属核,Au 原子中心到中心距离)具有二十面体结构。其次,它们的超小尺寸诱导强烈的电子能量量子化,而不是在金属金纳米颗粒或体金中连续的导带。因此,纳米团簇成为半导体,并具有相当大的带隙(例如,Au₂₅(SR)₁₈ 的~1.3eV)。此外,Aun(SR)m 可以掺杂单个其他金属原子,这对于催化非常有意义,因为纳米团簇的催化性能可以真正在原子基础上进行调整。总的来说,原子精确的 Aun(SR)m 纳米团簇有望成为一类有前途的模型催化剂。这些明确定义的纳米团簇将为深入了解金属纳米催化提供新的机会,例如通过将行为与纳米团簇的结构相关联,深入了解尺寸依赖性和分子活化、活性中心和催化机制。未来对原子精确纳米团簇催化剂的研究将有助于深入了解催化,并为特定化学过程的高选择性催化剂的新设计做出贡献。

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