双金属片
纳米团簇
纳米材料
纳米颗粒
纳米技术
纳米结构
材料科学
金属
单排替反应
原子扩散
化学工程
化学
结晶学
无机化学
冶金
工程类
作者
Qiaofeng Yao,Yan Feng,Victor Fung,Yong Yu,De‐en Jiang,Jing Wang,Jianping Xie
标识
DOI:10.1038/s41467-017-01736-5
摘要
Abstract Precise control of alloying sites has long been a challenging pursuit, yet little has been achieved for the atomic-level manipulation of metallic nanomaterials. Here we describe utilization of a surface motif exchange (SME) reaction to selectively replace the surface motifs of parent [Ag 44 (SR) 30 ] 4− (SR = thiolate) nanoparticles (NPs), leading to bimetallic NPs with well-defined molecular formula and atomically-controlled alloying sites in protecting shell. A systematic mass (and tandem mass) spectrometry analysis suggests that the SME reaction is an atomically precise displacement of SR–Ag(I)–SR-protecting modules of Ag NPs by the incoming SR–Au(I)–SR modules, giving rise to a core-shell [Ag 32 @Au 12 (SR) 30 ] 4− . Theoretical calculation suggests that the thermodynamically less favorable core-shell Ag@Au nanostructure is kinetically stabilized by the intermediate Ag 20 shell, preventing inward diffusion of the surface Au atoms. The delicate SME reaction opens a door to precisely control the alloying sites in the protecting shell of bimetallic NPs with broad utility.
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