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用于增强析氢催化的化学转化磷化物-金属纳米异质结构的区域选择性构建

Regioselective Construction of Chemically Transformed Phosphide-Metal Nanoheterostructures for Enhanced Hydrogen Evolution Catalysis.

作者信息

Lu Xing-Zhou, Gu Chao, Zhang Qi, Shi Lei, Han Shi-Kui, Jin Guan-Ping

机构信息

Key Laboratory of Advanced Catalytic Materials and Reaction Engineering, School of Chemistry and Chemical Engineering, Hefei University of Technology, Hefei 230009, China.

Division of Nanomaterials & Chemistry, Hefei National Laboratory for Physical Sciences at the Microscale, Department of Chemistry, University of Science and Technology of China, Hefei 230026, China.

出版信息

Inorg Chem. 2021 May 17;60(10):7269-7275. doi: 10.1021/acs.inorgchem.1c00348. Epub 2021 Mar 25.

Abstract

Engineering nanoheterostructures (NHs) plays a key role in exploring novel or enhanced physicochemical properties of nanocrystals. Despite previously reported synthetic methodologies, selective synthesis of NHs to achieve the anticipated composition and interface is still challenging. Herein, we presented a colloidal strategy for the regioselective construction of typical Ag-CoP NHs with precisely controlled location of Ag nanoparticles (NPs) on unique chemically transformed CoP nanorods (NRs) by simply changing the ratio of different surfactants. As a proof-of-concept study, the constructed heterointerface-dependent hydrogen evolution reaction (HER) catalysis was demonstrated. The multiple Ag NP-tipped CoP NRs exhibited the best HER performance, due to their more exposed active sites and the synergistic effect at the interfaces. Our results open up new avenues in rational design and fabrication of NHs with delicate control over the spatial distribution and interfaces between different components.

摘要

工程纳米异质结构(NHs)在探索纳米晶体的新型或增强的物理化学性质方面起着关键作用。尽管之前已经报道了合成方法,但选择性合成NHs以实现预期的组成和界面仍然具有挑战性。在此,我们提出了一种胶体策略,通过简单地改变不同表面活性剂的比例,在独特的化学转化CoP纳米棒(NRs)上精确控制Ag纳米颗粒(NPs)的位置,区域选择性地构建典型的Ag-CoP NHs。作为概念验证研究,展示了构建的异质界面依赖性析氢反应(HER)催化。多个Ag NP尖端的CoP NRs表现出最佳的HER性能,这归因于它们更多暴露的活性位点和界面处的协同效应。我们的结果为合理设计和制造NHs开辟了新途径,能够对不同组分之间的空间分布和界面进行精细控制。

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