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首页> 外文期刊>Journal of intelligent material systems and structures >Adjustable fluid and particle permeation through hydrogel composite membranes
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Adjustable fluid and particle permeation through hydrogel composite membranes

机译:通过水凝胶复合膜可调节的流体和颗粒渗透

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摘要

>Membranes act as smart structures in respect to their permeation abilities. Control of particle and fluid permeation through a synthetic membrane can be achieved by using different effects like size-exclusion or electromagnetic interactions that occur between the particles and membrane pores. The simulation of controlled permeability provides an insight into the smart behavior of membranes for chemical signal processing, sensing interfaces or lab-on-a-chip devices. In the current work, we model the underlying physical processes on a microfluidic level using the engineer’s approach of laminar flow through pipes. Different pore geometries inside a composite membrane system consisting of a polyethylene terephthalate support membrane and a poly(N-isopropylacrylamide) hydrogel-layer are investigated. Simulations for different states of thermally induced pore opening are performed for free and blocked states. From the results we derive paradigms for the design of a membrane system for microfluidic cell-size profiling considering stimulus-range, pore shape and measurement setup.
机译: >膜很聪明关于其渗透能力的结构。通过使用不同的效果,例如尺寸排阻或发生在颗粒和膜孔之间的电磁相互作用,可以控制通过合成膜的颗粒和流体渗透。受控渗透率的仿真提供了对用于化学信号处理,传感接口或芯片实验室设备的膜的智能行为的深入了解。在当前的工作中,我们使用工程师的层流通过管道的方法在微流体水平上对基本物理过程进行建模。研究了由聚对苯二甲酸乙二醇酯支撑膜和聚(N-异丙基丙烯酰胺)水凝胶层组成的复合膜系统内部的不同孔几何形状。针对自由状态和阻塞状态执行了热诱导孔打开的不同状态的模拟。从结果中,我们得出了考虑到刺激范围,孔形状和测量设置的微流体细胞大小分布膜系统设计范例。

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