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Adsorption of alkanethiol self-assembled monolayers on sputtered gold substrates for atomic nanolithography applications

机译:溅射金基底上烷硫醇自组装单分子层的吸附,用于原子纳米平版印刷应用

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摘要

A detailed study of the self-assembly and coverage by 1-nonanethiol of sputtered Au surfaces using molecular resolution atomic force microscopy (AFM) and scanning tunneling microscopy (STM) is presented. The monolayer self-assembles on a smooth Au surface composed predominantly of {111} oriented grains. The domains of the alkanethiol monolayer are observed with sizes typically of 5-25 nm, and multiple molecular domains can exist within one Au grain. STM imaging shows that the (4 × 2) superlattice structure is observed as a (3 × 2√3) structure when imaged under noncontact AFM conditions. The 1-nonanethiol molecules reside in the threefold hollow sites of the Au{111} lattice and aligned along its [112] lattice vectors. The self-assembled monolayer (SAM) contains many nonuniformities such as pinholes, domain boundaries, and monatomic depressions which are present in the Au surface prior to SAM adsorption. The detailed observations demonstrate limitations to the application of 1-nonanethiol as a resist in atomic nanolithography experiments to feature sizes of ~20 nm.
机译:提出了使用分子分辨率原子力显微镜(AFM)和扫描隧道显微镜(STM)对被溅射的Au表面的1-壬烷硫醇进行自组装和覆盖的详细研究。单层在主要由{111}取向晶粒组成的光滑Au表面上自组装。观察到链烷硫醇单层的区域的大小通常为5-25 nm,并且一个Au晶粒内可以存在多个分子区域。 STM成像显示,在非接触式AFM条件下成像时,观察到(4×2)超晶格结构为(3×2√3)结构。 1-壬烷硫醇分子位于Au {111}晶格的三重空心位置,并沿其[112]晶格矢量排列。自组装单层(SAM)包含许多不均匀性,例如针孔,畴边界和在SAM吸附之前在Au表面存在的单原子凹陷。详细的观察结果表明,在原子纳米光刻实验中将1-壬烷硫醇用作抗蚀剂存在局限性,其尺寸约为20 nm。

著录项

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    ODwyer Colm;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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