Fang Jun, Li Jingguo, Zhang Bin, Yuan Xun, Asakura Hiroyuki, Tanaka Tsunehiro, Teramura Kentaro, Xie Jianping, Yan Ning
Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, 117585, Singapore.
Nanoscale. 2015 Apr 14;7(14):6325-33. doi: 10.1039/c5nr00549c.
In this study, 6-mercaptohexanoic (MHA) protected Au25(MHA)18 nanoclusters (or thiolated Au NCs) deposited on various inorganic supports, including hydroxyapatite (HAP), TiO2 (Degussa P25), activated carbon (AC), pyrolyzed graphene oxide (PGO), and fumed SiO2 were prepared via a conventional impregnation method. Following that, calcination under a N2 stream was conducted to produce surface ligand free, highly dispersed Au NCs catalysts. The effects of supports on the size and catalytic activity of Au NCs were systematically investigated. No obvious size growth was observed for Au NCs on HAP and P25 after thermally induced ligand removal, due to the strong interaction between the metal and the supports. However, severe aggregations of Au NCs were seen after thermal treatment on three other supports, including AC, PGO, and SiO2. The removal of surface thiol ligands from the Au NCs is crucial to catalyze nitrobenzene hydrogenation, where only calcined Au/HAP and Au/P25 exhibited good catalytic activity. On the other hand, all the supported Au NCs were active for the styrene oxidation, where Au/HAP exhibited the best catalytic performance. Altogether, both the size effect and metal-support interaction are crucial for the design of supported Au NCs as efficient catalysts for targeted reactions.
在本研究中,通过传统浸渍法制备了沉积在各种无机载体上的6-巯基己酸(MHA)保护的Au25(MHA)18纳米团簇(或硫醇化金纳米簇),这些无机载体包括羟基磷灰石(HAP)、TiO2(德固赛P25)、活性炭(AC)、热解氧化石墨烯(PGO)和气相二氧化硅。随后,在氮气气流下进行煅烧以制备无表面配体、高度分散的金纳米簇催化剂。系统研究了载体对金纳米簇尺寸和催化活性的影响。由于金属与载体之间的强相互作用,在热诱导配体去除后,HAP和P25上的金纳米簇未观察到明显的尺寸增长。然而,在AC、PGO和SiO2这三种其他载体上进行热处理后,观察到金纳米簇严重聚集。从金纳米簇上去除表面硫醇配体对于催化硝基苯氢化至关重要,其中只有煅烧后的Au/HAP和Au/P25表现出良好的催化活性。另一方面,所有负载型金纳米簇对苯乙烯氧化均具有活性,其中Au/HAP表现出最佳的催化性能。总之,尺寸效应和金属-载体相互作用对于设计负载型金纳米簇作为靶向反应的高效催化剂都至关重要。