Huang Ping, Jiang Zhi, Chen Guoxiang, Zhu Yan, Sun Yuhan
Low-Carbon Conversion Center, Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201210, China.
J Nanosci Nanotechnol. 2013 Jul;13(7):5088-92. doi: 10.1166/jnn.2013.7577.
Atomically precise Au(n) nanoclusters (n = number of gold atom in cluster) ideally composed of an exact number of gold atoms have unique core-shell structure and non-metallic electronic properties. The extremely small size of Au25 and Au38 nanoclusters induces a large energy gap in their electronic structures, which gives rise to unprecedented catalytic activity in some chemical reactions. Here we report dehydration of phenylboronic acid to boroxine with small Au25 and Au38 nanocluster catalysts, respectively. Especially, Au25 nanocluster is arranged with Au13 icosahedral core capped by twelve gold atoms as an exterior shell. Au38 nanocluster is a face-fused biicosahedral Au23 core encapsulated by a shell comprised of fifteen gold atoms. Au38 nanoclusters exhibit higher activity than Au25 nanoclusters. This study is an attempt to provide a powerful tool for the catalyst design and to gain a further insight into the correlation of structural properties with catalytic properties.
原子精确的金(n)纳米团簇(n为团簇中金原子的数量)理想情况下由精确数量的金原子组成,具有独特的核壳结构和非金属电子特性。金25和金38纳米团簇极小的尺寸在其电子结构中产生了较大的能隙,这在某些化学反应中带来了前所未有的催化活性。在此,我们分别报道了使用小金25和金38纳米团簇催化剂将苯硼酸脱水生成硼氧六环的反应。特别地,金25纳米团簇由金13二十面体核心和作为外壳的十二个金原子封顶组成。金38纳米团簇是由十五个金原子组成的外壳包裹的面融合双二十面体金23核心。金38纳米团簇比金25纳米团簇表现出更高的活性。本研究旨在为催化剂设计提供一个有力工具,并进一步深入了解结构性质与催化性质之间的相关性。