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Self-Assembly of Gold Nanoparticles on Nanometre-Patterned Surface
引用本文:张永军 杨景海 李卫 张宇 徐岭 徐骏 黄信凡 陈坤基. Self-Assembly of Gold Nanoparticles on Nanometre-Patterned Surface[J]. 中国物理快报, 2005, 22(12): 3133-3136
作者姓名:张永军 杨景海 李卫 张宇 徐岭 徐骏 黄信凡 陈坤基
作者单位:[1]Institute of Solid State Physics, Jilin Normal University, Siping 136000 [2]National Laboratory of Solid State Microstructures and Department of Physics, Nanjing University, Nanjing 210093
基金项目:Supported by Stage Key Programme for Basic Research of China under Grant Nos 2001CB610503 and 2003CD314702-02, the National Nature Science Foundation of China under Grant Nos 10174035 and 90301009, and Doctoral Research Fund of Jilin Normal University (2005074).
摘    要:

关 键 词:纳米图案表面 自组装 纳米粒子 硅表面 半导体 固体物理
收稿时间:2005-08-04
修稿时间:2005-08-04

Self-Assembly of Gold Nanoparticles on Nanometre-Patterned Surface
ZHANG Yong-Jun, YANG Jing-Hai, LI Wei, ZHANG Yu, XU Ling, XU Jun, HUANG Xin-Fan, CHEN Kun-Ji. Self-Assembly of Gold Nanoparticles on Nanometre-Patterned Surface[J]. Chinese Physics Letters, 2005, 22(12): 3133-3136
Authors:ZHANG Yong-Jun   YANG Jing-Hai   LI Wei   ZHANG Yu   XU Ling   XU Jun   HUANG Xin-Fan   CHEN Kun-Ji
Abstract:The self-assembly processes of gold nanoparticles on nanometre-step-patterned Si surface and polished Si surface are investigated by the convective self-assembly method. The convective self-assembly method is used to deposit the colloids dispersed in benzene onto the substrates. The SEM results show that the configurations of the gold arrays depend on the surface morphology of the substrates. On the nanometre-step-patterned Si surface, the nanoparticles self assemble into parallel lines, and the distance between the neighbouring lines is around 35 nm. On the polished Si surface the nanoparticles form compact domains. In each domain the particles are closepacked in a two-dimensional hexagonal superlattice and are separated by uniform distances. The analysis shows that on the nanometre-step-patterned Si surface, the steps play critical roles in the self-assembly process of gold nanoparticles. The capillary force from the steps drives the particles to lines along the steps. Therefore, the particles tend to self-assemble into one-dimensional line structures when the solvent evaporates. For the polished Si substrate there is a little difference that the particles form two-dimensional hexagonal superlattices without the directional confinement.
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