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首页> 外文期刊>Advanced Science Letters >Hydrophilic Interfacing for Thermal Micro Assembly of Polymers (HITMAP)
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Hydrophilic Interfacing for Thermal Micro Assembly of Polymers (HITMAP)

机译:聚合物热微组装的亲水界面(HITMAP)

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摘要

This paper presents a simple approach to create microchannels in polydimethylsiloxane (PDMS) using basic hydrophobic-hydrophilic interactions of polymers. During polymerization, low molecular weight hydrophobic chains of PDMS expel hydrophilic moieties. This phenomenon has been used to create microchannels in PDMS. The process is simple, systematic, flexible in design, easy to implement, rapid, inexpensive and does not require lithography. Fabrication of microchannels in PDMS can be carried out using bench-top tools without the aid of any special facilities or equipment. With directed thermal polymerization over the hot plate, the expulsion of hydrophilic materials creates microchannels along the path traveled by particles. The approach is sensitive to the polymer viscosity, temperature profile and the surface chemistry of the particles. This work can have important implications in reducing the cost and time for prototyping polymer based applications in separation science, cell behavior studies, catalytic membranes and hydrogen storage. The membranes are characterized for electrical continuity and charge effects on conductivity.
机译:本文介绍了一种使用聚合物的基本疏水-亲水相互作用在聚二甲基硅氧烷(PDMS)中创建微通道的简单方法。在聚合过程中,PDMS的低分子量疏水链会排出亲水性部分。此现象已用于在PDMS中创建微通道。该过程简单,系统,设计灵活,易于实施,快速,廉价并且不需要光刻。可以使用台式工具在PDMS中制造微通道,而无需任何特殊的设施或设备。通过在加热板上进行定向热聚合,亲水性物质的排出会沿着微粒传播的路径形成微通道。该方法对聚合物粘度,温度曲线和颗粒的表面化学性质敏感。这项工作可能对降低基于聚合物的原型在分离科学,细胞行为研究,催化膜和氢存储中的应用的成本和时间具有重要意义。膜具有电连续性和电荷对电导率的影响。

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