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Step-and-repeat nanoimprint-, photo- and laser-lithography from one customised CNC machine

机译:来自一台定制CNC机床的分步重复纳米压印,照片和激光光刻

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摘要

The conversion of a computer numerical control machine into a nanoimprint step-and-repeat tool with additional laser- and photolithography capacity is documented here. All three processes, each demonstrated on a variety of photoresists, are performed successfully and analysed so as to enable the reader to relate their known lithography process(es) to the findings. Using the converted tool, 1 cm2 of nanopattern may be exposed in 6 s, over 3300 times faster than the electron beam equivalent. Nanoimprint tools are commercially available, but these can cost around 1000 times more than this customised computer numerical control (CNC) machine. The converted equipment facilitates rapid production and large area micro- and nanoscale research on small grants, ultimately enabling faster and more diverse growth in this field of science. In comparison to commercial tools, this converted CNC also boasts capacity to handle larger substrates, temperature control and active force control, up to ten times more curing dose and compactness. Actual devices are fabricated using the machine including an expanded nanotopographic array and microfluidic PDMS Y-channel mixers.
机译:此处记录了将计算机数控机床转换为具有附加激光和光刻能力的纳米压印步进重复工具的过程。分别在各种光刻胶上演示的所有三个过程均已成功执行和分析,以使读者能够将其已知的光刻过程与发现相关联。使用转换后的工具,可以在6秒钟内曝光1平方厘米的纳米图案,其速度是等效电子束的3300倍。纳米压印工具在市场上可以买到,但其价格可能比这种定制的计算机数控(CNC)机器高出约1000倍。转换后的设备有助于快速生产和小额赠款的大面积微米和纳米级研究,最终使该科学领域的发展更快,更多样化。与商用工具相比,这种经过改装的CNC控制器还具有处理更大基材,温度控制和主动力控制的能力,固化剂量和致密性最高可提高十倍。使用该机器制造的实际设备包括扩展的纳米形貌阵列和微流体PDMS Y通道混合器。

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