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Effect of Graft Yield on the Thermo-Responsive Permeability Through Porous Membranes with Plasma-Grafted Poly(N-isopropylacrylamide) Gates

机译:接枝产率对等离子接枝聚(N-异丙基丙烯酰胺)多孔膜多孔膜热响应渗透率的影响

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摘要

The effect of graft yield on both the thermo-responsive hydraulic permeability and the therrno-responsive diffusional permeability through porous membranes with plasma-grafted poly(N-isopropylacrylamide) (PNIPAM) gates was investigated. Both thermo-responsive flat membranes and core-shell microcapsule membranes with a wide range of graft yield of PNIPAM were prepared using a plasma-graft pore-filling polymerization method. The grafted PNIPAM was formed homogeneously throughout the entire thickness of both the flat polyethylene membranes and the microcapsule polyamide membranes. Both the hydraulic permeability and the diffusional permeability were heavily dependent on the PNIPAM graft yield. With increasing the graft yield, the hydraulic permeability (water flux) decreases rapidly at 25℃ because of the decrease of the pore size; however, the water flux at 40℃ increases firstly to a peak because of the increase of hydrophobicity of the pore surface, and then decreases and finally tends to zero because of the pore size becoming smaller and smaller. For the diffusional permeability, the temperature shows different effects on the diffusional permeability coefficients of solutes across the membranes. When the graft yield was low, the diffusional coefficient of solute across the membrane was higher at temperature above the lower critical solution temperature (LCST) than that below the LCST; however, when the graft yield was high, the diffusional coefficient was lower at temperature above the LCST than that below the LCST. It is very important to choose or design a proper graft yield of PNIPAM for obtaining a desired thermo-responsive "on/off" hydraulic or diffusional permeability.
机译:研究了通过等离子接枝聚(N-异丙基丙烯酰胺)(PNIPAM)浇口的多孔膜,接枝产率对热响应水力渗透率和热响应扩散渗透率的影响。采用等离子接枝孔填充聚合法制备了PNIPAM接枝率范围大的热响应性平膜和核壳型微胶囊膜。接枝的PNIPAM在扁平聚乙烯膜和微胶囊聚酰胺膜的整个厚度上均一地形成。水力渗透率和扩散渗透率都很大程度上取决于PNIPAM接枝物的产量。随着接枝产量的增加,由于孔隙尺寸的减小,水力渗透率(水通量)在25℃迅速降低。然而,由于孔表面疏水性的增加,在40℃时水通量首先增加到一个峰值,然后由于孔的尺寸越来越小而减小,最后趋于零。对于扩散渗透率,温度对溶质穿过膜的扩散渗透率系数表现出不同的影响。当接枝产率低时,高于最低临界溶液温度(LCST)的温度下的溶质在膜上的扩散系数高于低于最低临界溶液温度(LCST)的温度。然而,当接枝率高时,在LCST以上的温度下的扩散系数比LCST以下的温度低。选择或设计适当的PNIPAM接枝产率对于获得所需的热响应性“开/关”水力或扩散渗透率非常重要。

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