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首页> 外文期刊>Journal of Microelectromechanical Systems >A Hydrogel-Actuated Environmentally Sensitive Microvalve for Active Flow Control
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A Hydrogel-Actuated Environmentally Sensitive Microvalve for Active Flow Control

机译:用于主动流量控制的水凝胶驱动环境敏感微型阀

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摘要

This paper reports on the fabrication and test of a hydrogel-actuated microvalve that responds to changes in the concentration of specific chemical species in an external liquid environment. The microvalve consists of a thin hydrogel, sandwiched between a stiff porous membrane and a flexible silicone rubber diaphragm. Swelling and deswelling of the hydrogel, which results from the diffusion of chemical species through the porous membrane is accompanied by the deflection of the diaphragm and hence closure and opening of the valve intake orifice. A phenylboronicacid-based hydrogel was used to construct a smart microvalve that responds to the changes in the glucose and pH concentrations. The fastest response time (for a pH concentration cycle) achieved was 7 min using a 30-μm-thick hydrogel and a 60-μm-thick porous membrane with 0.1μm pore size and 40% porosity.
机译:本文报道了水凝胶驱动的微型阀的制造和测试,该微型阀可响应外部液体环境中特定化学物质的浓度变化。微型阀由薄水凝胶组成,夹在硬质多孔膜和柔性硅橡胶隔膜之间。由于化学物质通过多孔膜的扩散而引起的水凝胶的溶胀和溶胀伴随着隔膜的挠曲,从而导致阀门进气孔的关闭和打开。基于苯基硼酸的水凝胶被用于构建一个智能的微阀,该微阀可响应葡萄糖和pH浓度的变化。使用30μm厚的水凝胶和60μm厚,孔径为0.1μm,孔隙率为40%的多孔膜,最快的响应时间(对于pH浓度循环)为7分钟。

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