Khetrapal Navneet Singh, Wang Lai-Sheng, Zeng Xiao Cheng
Department of Chemistry , University of Nebraska-Lincoln , Lincoln , Nebraska 68588 , United States.
Department of Chemistry , Brown University , Providence , Rhode Island 02912 , United States.
J Phys Chem Lett. 2018 Sep 20;9(18):5430-5439. doi: 10.1021/acs.jpclett.8b02372. Epub 2018 Sep 7.
We perform a joint photoelectron spectroscopy and theoretical study to investigate CO adsorption sites on midsized gold clusters, Au ( n = 21-25), a special size region that bridges the highly symmetric pyramidal cluster Au (Li et al. Science 2003, 299, 864) and the prevailing core-shell clusters starting from Au (Schaefer et al. ACS Nano 2014, 8, 7413). Particular attention is placed on whether the CO binding can significantly change structures of the host clusters in view of the fact that the size-dependent structural change already occurs for bare gold clusters in this size range. A transition from hollow-tubular to fused-planar structures is identified for the Au CO clusters even though the CO molecule mostly binds to an apex gold atom. The computed CO adsorption energy and HOMO-LUMO gap of the gold clusters suggest that among the five gold clusters the Au cluster exhibits the strongest CO binding and thereby could be a good catalytic model system.
我们进行了联合光电子能谱和理论研究,以探究中型金簇(Au,n = 21 - 25)上的CO吸附位点,这是一个特殊的尺寸区域,它连接了高度对称的金字塔形簇Au(Li等人,《科学》,2003年,299卷,864页)和从Au开始的主流核壳簇(Schaefer等人,《美国化学会纳米》,2014年,8卷,7413页)。鉴于在此尺寸范围内裸金簇已经出现了尺寸依赖性结构变化,我们特别关注CO的结合是否会显著改变主体簇的结构。对于Au - CO簇,尽管CO分子大多与顶端金原子结合,但仍确定了从空心管状到融合平面结构的转变。计算得到的金簇的CO吸附能和HOMO - LUMO能隙表明,在这五个金簇中,Au簇表现出最强的CO结合能力,因此可能是一个良好的催化模型体系。