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首页> 外文期刊>Nanoscale >Dealloying-based facile synthesis and highly catalytic properties of Au core/porous shell nanoparticles
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Dealloying-based facile synthesis and highly catalytic properties of Au core/porous shell nanoparticles

机译:Dealloying-based灵巧的合成和高度催化性能的非盟的核心/多孔壳纳米粒子

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摘要

Porous nanostructures exhibit excellent catalytic properties due to high surface-to-volume ratio, good surface reactivity and various structural features, but controlling the distribution, size, shape and density of pores and structural features of these particles is highly challenging. Herein, we report a tunable dealloying-based facile synthetic strategy to form highly porous Au core/porous shell nanoparticles (CPS NPs) in high yield by selectively dissolving Ag atoms from Au/Au-Ag core/alloy shell NPs. The CPS NPs exhibit a very short induction time, high conversion rate constant, low activation energy and high turnover frequency due to their catalytically active porous shells containing networked thin ligaments, surface defects, ultra-high porosity and photothermal properties. The CPS NPs are more catalytic Au NPs than other reported Au nanostructures, and the strategy and results open avenues in porous nanostructures and nanocatalysts.
机译:多孔纳米结构表现出优异的催化属性,由于高表面体积比良好的表面活性和各种结构特性,但控制分布、大小形状和孔密度和结构这些粒子的特性是高度具有挑战性的。dealloying-based灵巧的合成策略形成高度多孔非盟的核心/多孔壳纳米粒子在高收益(CPS NPs)从非盟/ Au-Ag选择性地溶解Ag原子核心/合金外壳NPs。诱导时间短,转化率高常数,低活化能和高营业额频率由于其催化地活跃包含网络薄多孔壳韧带、表面缺陷、超高孔隙度和光热光谱分析属性。催化比其他报道,非盟盟NPs纳米结构,开放策略和结果在多孔纳米结构和途径nanocatalysts。

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