1] Beijing National Laboratory for Molecular Science, CAS Key Laboratory of Colloid, Interface, and Chemical Thermodynamics, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, P. R. China [2].
1] Beijing National Laboratory for Molecular Science, CAS Key Laboratory of Colloid, Interface, and Chemical Thermodynamics, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, P. R. China [2] College of Chemistry and Molecular Engineering, Zhengzhou University, Zhengzhou, Henan 450001, P. R. China [3].
Sci Rep. 2014 Jun 11;4:5259. doi: 10.1038/srep05259.
Well-defined noble metal nanocrystals (NMNCs) of a unique morphology yet a uniform facet have attracted broad interests. In this regard, those with a highly branched architecture have gained particular attention. Most of the currently existing branched NMNCs, however, are enclosed by mixed facets. We now report that branched Au nanoarchitectures could be facilely fabricated by mixing an aqueous solution of KAuCl₄, an aqueous dispersion of graphene oxide, and ethanol under ambient conditions. Interestingly, unilike the conventional branched NMNCs, our unique Au nanostructures are predominately enriched with a uniform facet of {111}. Compared to the spherical Au nanostructures exposed with mixed facets, our branched nanospecies of a uniform facet display superior catalytic performances both for the catalytic reduction of 4-nitrophenol and the electrocatalytic oxidation of methanol. Our investigation represents the first example that Au nanostructures simultaneously featured with a highly branched architecture and a uniform crystal facet could be formulated. Our unique Au nanostructures provide a fundamental yet new scientific forum to disclose the correlation between the surface atomic arrangement and the catalytic performances of branched NMNCs.
具有明确形貌和均匀晶面的贵金属纳米晶体(NMNCs)引起了广泛的关注。在这方面,具有高度支化结构的纳米晶体受到了特别关注。然而,目前大多数具有支化结构的 NMNCs 是由混合晶面封闭的。我们现在报告,在环境条件下,通过混合 KAuCl4 的水溶液、氧化石墨烯的水分散体和乙醇,可以容易地制备出具有支化结构的 Au 纳米结构。有趣的是,与传统的支化 NMNCs 不同,我们独特的 Au 纳米结构主要富含均匀的{111}晶面。与暴露混合晶面的球形 Au 纳米结构相比,我们具有均匀晶面的支化纳米物种在 4-硝基苯酚的催化还原和甲醇的电催化氧化反应中表现出优异的催化性能。我们的研究代表了首例同时具有高度支化结构和均匀晶体晶面的 Au 纳米结构的合成。我们独特的 Au 纳米结构为揭示支化 NMNCs 的表面原子排列与催化性能之间的相关性提供了一个基础而新颖的科学论坛。