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Nanoclusters of gold on a high-area support: Almost uniform nanoclusters imaged by scanning transmission electron microscopy

机译:高面积支持物上的金纳米团簇:通过扫描透射电子显微镜成像的几乎均匀的纳米团簇

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Highly dispersed supported gold offers unprecedented catalytic properties. Determination of the dependence of the catalytic properties on the gold nanocluster size requires the preparation of size-controlled gold nanoclusters on support surfaces with a high degree of uniformity. Starting from site-isolated mononuclear gold complexes on high-area MgO, we demonstrate the preparation of gold clusters consisting of <10 atoms. These samples have been imaged with atomic resolution by aberration-corrected scanning transmission electron microscopy. The images show that treatment of the supported mononuclear complexes at 318 K in flowing helium caused aggregation of the gold into clusters of 2-6 atoms, present with unconverted individual site-isolated mononuclear gold species and in the absence of any larger nanoparticles. Treatment of the sample at a higher temperature (373 K) in flowing helium resulted in the formation of gold clusters with diameters of 0.58 ± 0.15 nm (containing roughly 10 Au atoms), again in the absence of larger nanoparticles. Upon exposure of the supported nanoclusters to the electron beam, they underwent aggregation to gold clusters approximately 1 nm in average diameter, as shown in consecutive STEM images.
机译:高度分散的负载型金提供了前所未有的催化性能。要确定催化性能对金纳米团簇尺寸的依赖性,需要在载体表面上制备具有高度均一度的尺寸受控的金纳米团簇。从高面积MgO上的位点隔离单核金络合物开始,我们证明了由<10个原子组成的金簇的制备。这些样品已经通过像差校正扫描透射电子显微镜以原子分辨率成像。图像显示,在流动的氦气中在318 K下处理负载的单核络合物会导致金聚集到2-6个原子的簇中,存在未转化的单个位点隔离的单核金物种,并且不存在任何较大的纳米粒子。再次在没有较大的纳米粒子的情况下,在流动的氦气中在较高温度(373 K)下处理样品导致形成直径为0.58±0.15 nm(包含约10个Au原子)的金簇。负载的纳米团簇暴露于电子束后,它们会聚集成平均直径约为1 nm的金簇,如连续STEM图像所示。

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