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MECHANISMS OF ENTRAPMENT AND RELEASE OF FLUID DROPLETS FROM NANO-SCALE SURFACE FEATURES

机译:纳米尺度表面特征截留和释放流体的机理

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摘要

Engineering surfaces are never perfectly flat. They contain micro and nano-scale features on multiple length scales. Predicting the amount of fluid trapped in these minute surface crevices and its controlled release could benefit a variety of practical applications. In a sliding contact, the released fluid could create an ultra-thin film, reducing the direct contact and consequently the boundary friction. Transdermal patches are the least invasive of available subcutaneous drug delivery techniques. The drug is stored in a micro-reservoir and it is released to the skin either through a permeable membrane or through a series of micro needles.The aim of the current paper represents the first attempt to investigate whether a modeling approach encompassing two complementary simulation techniques in an integrated framework can be used to predict the volume of fluid stored in a nano-scale surface feature. Molecular dynamics (MD) simulation could provide accurate modeling of fluid behavior at nano-scale, and statistical mechanics (SM) could provide a fast prediction.
机译:工程表面永远不会完美平坦。它们包含多个长度尺度的微米和纳米尺度特征。预测困在这些微小表面缝隙中的流体量及其受控释放,可能会有益于多种实际应用。在滑动接触中,释放的流体可能会形成超薄膜,从而减少直接接触并因此降低边界摩擦。透皮贴剂是可用的皮下药物递送技术中侵入性最小的。该药物存储在微储器中,并通过可渗透膜或一系列微针释放到皮肤。本论文的目的是首次尝试研究一种建模方法是否包含两种互补的模拟技术集成框架中的“流体”可以用来预测纳米级表面特征中存储的流体量。分子动力学(MD)模拟可以提供纳米级流体行为的精确建模,而统计力学(SM)可以提供快速预测。

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