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Atomic Force Lithography of Nano/Microfluidic Channels for Verification and Monitoring of Aqueous Solutions

机译:纳米/微流体通道的原子力光刻技术,用于水溶液的验证和监控

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The growing interest in the physics of fluidic flow in nanoscale channels, as well as the possibility for high sensitive detection of ions and single molecules is driving the development of nanofluidic channels. The enrichment of charged analytes due to electric field-controlled flow and surface charge/dipole interactions along the channel can lead to enhancement of sensitivity and limits-of-detection in sensor instruments. Nuclear material processing, waste remediation, and nuclear non-proliferation applications can greatly benefit from this capability. Atomic force microscopy (AFM) provides a low-cost alternative for the machining of disposable nanochannels. The small AFM tip diameter (< 10 nm) can provide for features at scales restricted in conventional optical and electron-beam lithography. This work presents preliminary results on the fabrication of nano/microfluidic channels on polymer films deposited on quartz substrates by AFM lithography.
机译:对纳米级通道中的流体流物理学的兴趣日益浓厚,以及对离子和单个分子进行高灵敏检测的可能性正在推动纳米流体通道的发展。由于电场控制的流动以及沿通道的表面电荷/偶极子相互作用,带电分析物的富集可导致传感器仪器中灵敏度的提高和检测限的提高。核材料加工,废物修复和核不扩散应用可从此功能中受益匪浅。原子力显微镜(AFM)为加工一次性纳米通道提供了一种低成本的替代方法。小的AFM尖端直径(<10 nm)可以提供常规光学和电子束光刻所限制的比例的特征。这项工作提出了通过AFM光刻技术在沉积在石英基板上的聚合物膜上制备纳米/微流体通道的初步结果。

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