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首页> 外文期刊>SLAS Technology >Automated Scanning Probe Lithography with n-Alkanethiol Self-Assembled Monolayers on Au(111): Application for Teaching Undergraduate Laboratories
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Automated Scanning Probe Lithography with n-Alkanethiol Self-Assembled Monolayers on Au(111): Application for Teaching Undergraduate Laboratories

机译:n -烷硫醇自组装单分子膜在Au(111)上的自动扫描探针光刻技术:在大学实验室教学中的应用

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摘要

Controllers for scanning probe instruments can be programmed for automated lithography to generate desired surface arrangements of nanopatterns of organic thin films, such as n-alkanethiol self-assembled monolayers (SAMs). In this report, atomic force microscopy (AFM) methods of lithography known as nanoshaving and nano-grafting are used to write nanopatterns within organic thin films. Commercial instruments provide software to control the length, direction, speed, and applied force of the scanning motion of the tip. For nanoshaving, higher forces are applied to an AFM tip to selectively remove regions of the matrix monolayer, exposing bare areas of the gold substrate. Nanografting is accomplished by force-induced displacement of molecules of a matrix SAM, followed immediately by the surface self-assembly of n-alkanethiol molecules from solution. Advancements in AFM automation enable rapid protocols for nanolithography, which can be accomplished within the tight time restraints of undergraduate laboratories. Example experiments with scanning probe lithography will be described in this report that were accomplished by undergraduate students during laboratory course activities and research internships in the chemistry department of Louisiana State University. Students were introduced to principles of surface analysis and gained “hands-on” experience with nanoscale chemistry.
机译:可以对用于扫描探针仪器的控制器进行编程,以进行自动光刻,以生成所需的有机薄膜纳米图案(例如正烷硫醇自组装单层(SAMs))的纳米表面布置。在本报告中,使用原子力显微镜(AFM)的光刻方法(称为纳米剃毛和纳米接枝)在有机薄膜中写入纳米图案。商业仪器提供控制尖端扫描运动的长度,方向,速度和作用力的软件。对于纳米剃须,更高的力会施加到AFM尖端上,以有选择地去除基质单层的区域,从而暴露金基板的裸露区域。纳米接枝是通过力诱导的基质SAM分子的置换来完成的,然后立即从溶液中进行正烷硫醇分子的表面自组装。 AFM自动化技术的进步为纳米光刻技术提供了快速的协议,这可以在本科实验室的严格时间限制内完成。本报告将介绍使用扫描探针光刻的示例实验,这些实验是由大学生在路易斯安那州立大学化学系的实验室课程活动和研究实习期间完成的。向学生介绍了表面分析的原理,并获得了纳米化学的“动手实践”经验。

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