论文标题
单壁碳纳米管膜的局部超依赖性:建模和实验
Local ultra-densification of single-walled carbon nanotube films: modeling and experiment
论文作者
论文摘要
纳米结构的元面包的制造构成了重大的技术和基本挑战。尽管开发了支持可逆伸长和失真的新型系统,但它们的纳米级图案和对光学性质的控制仍然是一个开放的问题。本文中,我们报告了单壁碳纳米管膜的纳米级图案和相关反射系数调整的原子力显微镜光刻(AFML)应用。我们提出了捆绑重组,形成模式的稳定性以及用中镜下不同元素方法(MDEM)描述机械行为的能量分布的模型。所有观察到的现象都相互支持,并提供了一个使用网状纳米结构物质开发AFML图案化光学设备的平台。
Fabrication of nanostructured metasurfaces poses a significant technological and fundamental challenge. Despite developing novel systems that support reversible elongation and distortion, their nanoscale patterning and control of optical properties remain an open problem. Herein we report the atomic force microscope lithography (AFML) application for nanoscale patterning of single-walled carbon nanotube films and the associated reflection coefficient tuning. We present models of bundling reorganization, formed-pattern stability, and energy distribution describing mechanical behavior with mesoscopic distinct element method (MDEM). All observed and calculated phenomena support each other and present a platform for developing AFML patterned optical devices using meshy nanostructured matter.