Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Langmuir. 2010 Nov 2;26(21):16226-31. doi: 10.1021/la101326c.
The effect of composition and morphology of bimetallic Pd-Au nanoclusters on their chemical reactivity has been studied with acetylene decomposition and conversion to ethylene and benzene as the chemical probe. High resolution transmission electron microscopy (HR-TEM) and CO-Temperature Programmed Desorption (TPD) measurements were employed for structure and chemical composition determination. Pd-Au clusters were prepared in ultrahigh vacuum (UHV) environment on SiO(2)/Si(100) by direct deposition (DD) to form 2D bimetallic nanostructures. Different bimetallic cluster morphology could be obtained by employing the buffer layer assisted growth (BLAG) procedure with amorphous solid water as buffer material. The BLAG bimetallic clusters were found to be more reactive than DD particles toward acetylene hydrogenation to ethylene and trimerization to benzene. The morphology and composition of DD clusters enabled the formation of both tilted (low adsorption energy) and flat laying (high adsorption energy) benzene, while mainly tilted benzene was detected upon adsorption of acetylene on BLAG clusters. Moreover, the reactivity of bimetallic clusters was compared to that of thin Pd film. Strong preference (100:1 ratio) toward acetylene hydrogenation to ethylene over trimerization to benzene has been correlated with the lack of extended Pd(111) facets on the bimetallic clusters that suppress the benzene formation.
研究了双金属 Pd-Au 纳米团簇的组成和形态对其化学活性的影响,以乙炔分解和转化为乙烯和苯为化学探针。采用高分辨率透射电子显微镜(HR-TEM)和 CO-程序升温脱附(TPD)测量来确定结构和化学组成。在 SiO2/Si(100)上的超高真空(UHV)环境中通过直接沉积(DD)制备 Pd-Au 团簇,以形成二维双金属纳米结构。通过使用非晶态水作为缓冲材料的缓冲层辅助生长(BLAG)程序,可以获得不同的双金属团簇形态。与 DD 颗粒相比,BLAG 双金属团簇对乙炔加氢生成乙烯和三聚生成苯的反应性更高。DD 团簇的形态和组成使得既能形成倾斜(低吸附能)又能形成平躺(高吸附能)的苯,而在 BLAG 团簇上吸附乙炔时则主要检测到倾斜的苯。此外,还比较了双金属团簇和薄 Pd 膜的反应性。与三聚生成苯相比,双金属团簇对乙炔加氢生成乙烯具有很强的选择性(100:1 比),这与双金属团簇上缺乏扩展的 Pd(111)面有关,这些面抑制了苯的形成。