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Hierarchical concave layered triangular PtCu alloy nanostructures: rational integration of dendritic nanostructures for efficient formic acid electrooxidation

机译:分级分层三角凹PtCu合金纳米结构:rational集成的树突纳米结构的高效的甲酸电氧化

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摘要

The rational construction of multi-dimensional layered noble metal nanostructures is a great challenge since noble metals are not layer-structured materials. Herein, we report a one-pot hydrothermal synthetic method for PtCu hierarchical concave layered triangular (HCLT) nanostructures using DL-carnitine, KI, poly (vinylpyrrolidone), CuCl2, and H2PtCl6. The PtCu HCLT nanostructure is comprised of multilayered triangular dendrites. Its layer number is tunable by changing DL-carnitine concentrations, and the concavity/convexity of the PtCu triangle nanostructures is tunable by changing the H2PtCl6/CuCl2 ratio or KI concentrations. Hierarchical trigonal bipyramid nanoframes are also obtained under certain conditions. Because of its advantageous nanostructure and bimetallic synergetic effect, the obtained PtCu HCLT nanostructure exhibits enhanced electrocatalytic activity and prolonged stability to formic acid oxidation compared to commercial Pt black, Pd/C and some other nanostructures.
机译:多维的结构合理分层的贵金属纳米结构是一个伟大的由于贵金属不挑战layer-structured材料。PtCu锅水热合成的方法分级分层三角凹(HCLT)纳米结构使用DL-carnitine, KI,保利(vinylpyrrolidone)、CuCl2、,and H2PtCl6。HCLT纳米结构由多层组成三角形的树突。通过改变DL-carnitine浓度,凹/凸性PtCu三角形纳米结构被改变可调H2PtCl6 / CuCl2比率或KI浓度。层次三方晶系的双锥体nanoframes也在一定条件下获得的。它的有利的纳米结构和双金属协同作用的效果,获得PtCu HCLT纳米结构表现出增强electrocatalytic活动和长期稳定甲酸氧化相比,商业Pt黑色,Pd / C和其他一些纳米结构。

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