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Gating Characteristics of Thermo-Responsive Membranes with Grafted Linear and Crossiinked Poly(N-isopropylacrylamide)Gates

机译:线性和交叉接枝聚(N-异丙基丙烯酰胺)门的热敏膜的门控特性

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Thermo-responsive porous membranes with grafted linear and crossiinked poly(IV-isopropylacrylamide)(PNIPAM)gates are successfully prepared at temperatures above and below the lower critical solution temperature(LCST)of PNIPAM by using a plasma-induced grafting polymerization method,and the effects of operation pressure and grafting temperature on the thermo-responsive gating characteristics of the prepared membranes are investigated systematically.The fluxes of water through the grafted membranes increase simply with increasing the operation pressure no matter whether the environmental temperature is 40 °C or 25 °C.Under high operation pressure(e.g.,higher than 0.14 MPa),the grafted linear PNIPAM gates deform to a certain extent,whereas the grafted crossiinked PNIPAM gates do not deform.For both membranes with grafted linear and crossiinked PNIPAM gates,the membranes prepared at 25 °C(below the LCST of PNIPAM)show larger thermo-responsive gating coefficients than those prepared at 40 °C(above the LCST of PNIPAM),which results from different distributions of grafted PNIPAM gates in the membrane pores.When the PNIPAM gates are grafted at 25 °C,the grafted layer near the membrane surface is much thicker than that inside the membrane pores;on the other hand,when the PNIPAM gates are grafted at 40 °C,the grafted layer is homogeneously formed throughout the whole pore length.Both linear and crossiinked grafted PNIPAM gates in the membrane pores exhibit stable and repeatable thermo-responsive"open-close"switch performances under the operation pressure of 0.26 MPa.The results in this study provide valuable guidance for designing,fabricating,and operating thermo-responsive gating membranes with desirable performances.
机译:采用等离子诱导接枝聚合方法,在高于和低于PNIPAM的较低临界溶液温度(LCST)的温度下成功制备了具有线性和交叉接枝的聚(IV-异丙基丙烯酰胺)(PNIPAM)门的热敏多孔膜,系统地研究了操作压力和接枝温度对制备的膜的热响应门控特性的影响。无论环境温度是40°C还是25°C,通过接枝膜的水通量都随操作压力的增加而简单增加。 C.在较高的工作压力(例如高于0.14 MPa)下,嫁接的线性PNIPAM浇口会发生一定程度的变形,而嫁接的交叉插接的PNIPAM浇口则不会变形。在25°C(低于PNIPAM的LCST)下显示的热响应门控系数比在40°C下制备的更高C(在PNIPAM的LCST之上),这是由膜孔中接枝的PNIPAM浇口的不同分布导致的。当PNIPAM浇口在25°C接枝时,膜表面附近的接枝层比膜孔内部的接枝层厚得多另一方面,当PNIPAM浇口在40°C接枝时,接枝层在整个孔长上均一地形成。在膜孔中的线性和交叉接枝的PNIPAM浇口均表现出稳定且可重复的热响应性“开孔”。在0.26 MPa的操作压力下具有“闭合”开关性能。本研究结果为设计,制造和操作具有理想性能的热敏门控膜提供了有价值的指导。

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