论文标题

GAAS上金纳米颗粒的分子图案和定向自组装

Molecular Patterning and Directed Self-Assembly of Gold Nanoparticles on GaAs

论文作者

Liu, Tianhan, Keiper, Timothy, Wang, Xiaolei, Yang, Guang, Hallinan, Daniel, Zhao, Jianhua, Xiong, Peng

论文摘要

在半导体表面上创建有机自组装单层的微/纳米模式的能力对于在纳米科学的许多新兴领域的基本研究和应用至关重要。在这里,我们通过浸入式纳米谱和微接触印刷在无氧化物GAAS表面上表现出硫醇分子SAM的模式,这是通过表面蚀刻和GAAS的表面蚀刻和钝化过程促进的。通过检查DPN对纳米级点和线模式的写作,对GAAS上的分子扩散进行了定量分析,这与表面扩散模型非常吻合。通过将金纳米颗粒的定向自组装到GAAS上的4-氨基硫醇SAM的模板上,证明了图案化硫醇分子的功能。通过原子力显微镜和扫描电子显微镜证明了Au NP的高度选择性组装。精确控制Au NP使用分子模板在无氧化物半导体表面上组装的能力可能会导致有效的自下而上方法来制造纳米质量结构。

The ability to create micro/nano patterns of organic self-assembled monolayers on semiconductor surfaces is crucial for fundamental studies and applications in a number of emerging fields in nanoscience. Here, we demonstrate the patterning of thiol molecular SAMs on oxide-free GaAs surface by dip-pen nanolithography and micro-contact printing, facilitated by a process of surface etching and passivation of the GaAs. A quantitative analysis on the molecular diffusion on GaAs was conducted by examining the writing of nanoscale dot and line patterns by DPN, which agrees well with surface diffusion models. The functionality of the patterned thiol molecules was demonstrated by directed self-assembly of gold nanoparticles onto a template of 4-Aminothiophenol SAM on GaAs. The highly selective assembly of the Au NPs was evidenced with atomic force microscopy and scanning electron microscopy. The ability to precisely control the assembly of Au NPs on oxide-free semiconductor surfaces using molecular templates may lead to an efficient bottom-up method for the fabrication of nano-plasmonic structures.

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