Murakami Yoshitaka, Konishi Katsuaki
Creative Research Initiative Sosei, Graduate School of Environmental Science, Hokkaido University, North 21 West 10, Sapporo 001-0021, Japan.
J Am Chem Soc. 2007 Nov 21;129(46):14401-7. doi: 10.1021/ja075051b. Epub 2007 Oct 30.
The effect of dodecanethiolate-protected metallic nanoclusters of gold (Au:SC12, 1), silver (Ag:SC12), palladium (Pd:SC12), and platinum (Pt:SC12) on the catalytic activity of Mn(TPP)Cl (TPP = tetraphenylporphinato) was investigated in styrene oxidation with iodosylbenzene. Among the four metal clusters, only Au:SC12 led to appreciable acceleration of the catalytic reaction. The major role of the Au cluster was to regenerate the active catalytic path involving Mn(III) and Mn(V) from the deactivated Mn(IV) species. The binary 1/Mn(TPP)Cl catalyst system showed an absorption spectrum characteristic of Mn(III)-porphyrin after reaction, whereas a catalytically ineffective Mn(IV) species was observed as the sole porphyrin species in the absence of the Au cluster or in the presence of Pd, Ag, and Pt clusters. Accordingly, the slow oxidation reaction with Mn(TPP)Cl was accelerated by the addition of Au:SC12, and complete conversion of Mn(IV) into Mn(III) was observed in the absorption spectrum. 1H NMR inspection of the reaction of Au:SC12 and iodosylbenzene revealed that the surface dodecyl groups were partially oxidized into dodecanal and eliminated from the cluster surface, thereby producing unprotected gold sites on the surface. A reactivation mechanism involving the reaction of the Mn-porphyrin and the oxidant activated on the gold surface is proposed.
研究了十二硫醇保护的金(Au:SC12, 1)、银(Ag:SC12)、钯(Pd:SC12)和铂(Pt:SC12)金属纳米团簇对Mn(TPP)Cl(TPP = 四苯基卟啉)催化活性的影响,该催化反应以碘苯为氧化剂氧化苯乙烯。在这四种金属团簇中,只有Au:SC12能显著加速催化反应。金团簇的主要作用是使失活的Mn(IV)物种再生为涉及Mn(III)和Mn(V)的活性催化路径。二元1/Mn(TPP)Cl催化剂体系在反应后呈现出Mn(III)-卟啉的吸收光谱特征,而在没有金团簇或存在钯、银和铂团簇的情况下,观察到催化无效的Mn(IV)物种是唯一的卟啉物种。因此,加入Au:SC12可加速Mn(TPP)Cl的缓慢氧化反应,并且在吸收光谱中观察到Mn(IV)完全转化为Mn(III)。对Au:SC12与碘苯反应的1H NMR检测表明,表面十二烷基部分氧化为十二醛并从团簇表面消除,从而在表面产生未受保护的金位点。提出了一种涉及Mn-卟啉与在金表面活化的氧化剂反应的再活化机制。