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通过种子介导生长偶联氧化刻蚀在水溶液中简便合成单分散银纳米球。

Facile Synthesis of Monodisperse Silver Nanospheres in Aqueous Solution via Seed-Mediated Growth Coupled with Oxidative Etching.

机构信息

School of Physics and Materials Engineering , Dalian Nationalities University , Dalian , 116600 P. R. China.

National Key Laboratory of Science and Technology on Tunable Laser , Harbin Institute of Technology , Harbin , 150080 , P. R. China.

出版信息

Langmuir. 2018 May 29;34(21):6077-6084. doi: 10.1021/acs.langmuir.7b04343. Epub 2018 May 18.

Abstract

Because of their perfect geometrical symmetry, spherical metal nanoparticles have attracted much attention for various applications, including fundamental studies and construction of plasmonic devices. In this work, monodisperse silver nanospheres (Ag NSs) in aqueous solution were directly prepared by a continuous process of seed-mediated growth followed by oxidative etching. Silver nanocubes (Ag NCs) were synthesized by a seed-mediated growth method and subsequently were transformed to Ag NSs by simple injection of Cu to the freshly prepared Ag NCs solution. Not requiring any centrifugation steps at both growth and etching stages makes this procedure convenient and efficient. The etching process and morphology evolution of silver nanostructure were monitored by UV-vis spectromater, SEM, and XRD. Monodisperse Ag NSs with broadly tunable diameters (from 37 to 68 nm) have been successfully prepared. The optical property of Ag NSs has been studied and the experimental results show fairly good consistency with simulation results. Furthermore, these Ag NSs prepared by our approach could be constructed into ordered superlattice by self-assembly technique based on their high monodispersity and sphericity.

摘要

由于其完美的几何对称性,球形金属纳米粒子因其在各个应用领域(包括基础研究和等离子体器件的构建)中的广泛应用而受到了极大的关注。在这项工作中,通过种子介导生长随后进行氧化刻蚀的连续过程,直接在水溶液中制备了单分散的银纳米球(Ag NSs)。通过种子介导生长法合成了银纳米立方体(Ag NCs),然后通过将 Cu 简单注入到新制备的 Ag NCs 溶液中,将其转化为 Ag NSs。该方法在生长和刻蚀阶段都不需要任何离心步骤,因此既方便又高效。通过紫外-可见分光光度计、SEM 和 XRD 监测了银纳米结构的刻蚀过程和形态演变。成功制备了具有广泛可调直径(37 至 68nm)的单分散 Ag NSs。研究了 Ag NSs 的光学性质,实验结果与模拟结果相当吻合。此外,通过我们的方法制备的这些 Ag NSs 由于其高度的单分散性和球形,可以通过自组装技术构建有序超晶格。

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