介孔材料
材料科学
纳米结构
纳米技术
合理设计
对映选择合成
催化作用
不对称
化学工程
化学
有机化学
量子力学
物理
工程类
作者
Hao Lv,Dongdong Xu,Lizhi Sun,Joel Henzie,Aaron Lopes,Qingyu Gu,Yusuke Yamauchi,Ben Liu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2019-04-11
卷期号:19 (5): 3379-3385
被引量:86
标识
DOI:10.1021/acs.nanolett.9b01223
摘要
Mesoporous colloidal nanospheres with tailorable asymmetric nanostructures and multimetallic elemental compositions are building blocks in next-generation heterogeneous catalysts. Introducing structural asymmetry into metallic mesoporous frameworks has never been demonstrated, but it would be beneficial because the asymmetry enables the spatial control of catalytic interfaces, facilitates the electron/mass transfer and assists in the removal of poisonous intermediates. Herein, we describe a simple bottom-up strategy to generate uniform sub-100 nm multimetallic asymmetric bowl-shaped mesoporous nanospheres (BMSs). This method uses a surfactant-directed "dual"-template to control the kinetics of metal reduction on the surface of a vesicle, forming mesoporous metal islands on its surface whose spherical cone angle can be precisely controlled. The asymmetric BMS mesostructures with different spherical cone angles (structural asymmetries) and elemental compositions are demonstrated. The high surface area and asymmetric nature of the metal surfaces are shown to enhance catalytic performance in the alcohol oxidation reactions. The findings described here offer novel and interesting opportunities for rational design and synthesis of hierarchically asymmetric nanostructures with desired functions for a wide range of applications.
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