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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Formation of cationic gold clusters on the MgO surface from Au(CH3)(2)(acac) organometallic precursors: A theoretical analysis
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Formation of cationic gold clusters on the MgO surface from Au(CH3)(2)(acac) organometallic precursors: A theoretical analysis

机译:从Au(CH3)(2)(acac)有机金属前体在MgO表面形成阳离子金簇的理论分析

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The formation of gold atoms and clusters from the reduction by hydrogen of mononuclear [Au(CH3)(2)(acac)] organometallic complexes deposited on the MgO surface has been studied by first principle density functional theory calculations. The comparison of measured and computed infrared data suggests the occurrence of a dissociative adsorption of the complex on the surface of the oxide, although a given fraction of undissociated molecules can cohexist. The reduction can follow various mechanisms, leading to the formation of neutral or positively charged mononuclear gold intermediates. We show that some of these intermediates can easily diffuse on the surface at room temperature and lead to nucleation of stable partially oxidized gold clusters.
机译:通过第一原理密度泛函理论计算,研究了由氢还原沉积在MgO表面的单核[Au(CH3)(2)(acac)]有机金属络合物形成的金原子和簇。测量和计算的红外数据的比较表明,尽管一定比例的未解离分子可以共存,但复合物在氧化物表面发生了解离吸附。还原可以遵循各种机制,导致形成中性或带正电的单核金中间体。我们表明,其中一些中间体在室温下很容易在表面扩散,并导致稳定的部分氧化的金簇成核。

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