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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Direct growth of highly branched crystalline Au nanostructures on an electrode surface: their surface enhanced Raman scattering and electrocatalytic applications
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Direct growth of highly branched crystalline Au nanostructures on an electrode surface: their surface enhanced Raman scattering and electrocatalytic applications

机译:高支化晶体金纳米结构在电极表面上的直接生长:它们的表面增强了拉曼散射和电催化应用

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摘要

This paper reports a simple, one-step, template-free surface assisted growth of crystalline branched-like Au nanoparticles (three-dimensional (3-D) growth with more than 12 tips) with high yield and good size monodispersity at room temperature. The size of the Au branched nanocrystals could be tuned by controlling the composition of the starting reaction mixture (growth solution). The key surface growth strategy was to use a 1,6-hexanedithiol (HDT) monolayer-modified electrode immersed into growth solution to confine the growth of the branched Au nanocrystals on their surface. Time-course measurements by field emission-scanning electron microscopy (FESEM) were used to follow the reaction progress and the evolution of the branched-like nanocrystal shape. The Au nanocrystals exhibited strong surface enhanced effects which were utilized in the design of an efficient, stable, and Raman-active tag for biosensors, and electrocatalytic applications.
机译:本文报道了一种简单的,无模板的,无模板的表面辅助生长的晶体状分支金纳米颗粒(三维(3-D)生长,具有超过12个尖端),在室温下具有高产率和良好的尺寸单分散性。可以通过控制起始反应混合物(生长溶液)的组成来调节Au支链纳米晶体的尺寸。关键的表面生长策略是使用1,6-己二硫醇(HDT)单层修饰的电极浸入生长溶液中,以限制分支的Au纳米晶体在其表面上的生长。使用场发射扫描电子显微镜(FESEM)进行时程测量,以跟踪反应进程和分支状纳米晶体形状的演变。金纳米晶体具有很强的表面增强作用,可用于生物传感器和电催化应用的高效,稳定和拉曼活性标签的设计中。

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