【2h】

A cantilever-free approach to dot-matrix nanoprinting

机译:无悬臂点矩阵纳米打印方法

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摘要

Scanning probe lithography (SPL) is a promising candidate approach for desktop nanofabrication, but trade-offs in throughput, cost, and resolution have limited its application. The recent development of cantilever-free scanning probe arrays has allowed researchers to define nanoscale patterns in a low-cost and high-resolution format, but with the limitation that these are duplication tools where each probe in the array creates a copy of a single pattern. Here, we report a cantilever-free SPL architecture that can generate 100 nanometer-scale molecular features using a 2D array of independently actuated probes. To physically actuate a probe, local heating is used to thermally expand the elastomeric film beneath a single probe, bringing it into contact with the patterning surface. Not only is this architecture simple and scalable, but it addresses fundamental limitations of 2D SPL by allowing one to compensate for unavoidable imperfections in the system. This cantilever-free dot-matrix nanoprinting will enable the construction of surfaces with chemical functionality that is tuned across the nano- and macroscales.
机译:扫描探针光刻(SPL)是台式纳米加工的一种有前途的候选方法,但是在吞吐量,成本和分辨率方面的取舍限制了其应用。无悬臂扫描探针阵列的最新发展使研究人员能够以低成本和高分辨率格式定义纳米级图案,但局限性是这些是重复工具,阵列中的每个探针都可以创建单个图案的副本。在这里,我们报告了一个无悬臂的SPL体系结构,该体系结构可以使用2D独立驱动的探针阵列生成100纳米尺度的分子特征。为了物理地致动探针,使用局部加热来使弹性体膜在单个探针下方热膨胀,使其与图案化表面接触。这种架构不仅简单且可扩展,而且通过允许人们补偿系统中不可避免的缺陷来解决2D SPL的基本限制。这种无悬臂的点矩阵纳米印刷技术将能够构建具有化学功能的表面,该功能可在纳米和宏观尺度上进行调整。

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