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The polyurethane membranes with temperature sensitivity for water vapor permeation

机译:对水蒸气渗透具有温度敏感性的聚氨酯膜

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The size and shape of free-volume holes available in membrane materials control the rate of gas diffusion and its permeability. Based on this principle, two segmented thermo-sensitive polyurethane (TSPU) membranes with functional gates, i.e. the ability to sense and respond to external thermo-stimuli, were synthesized and used for water vapor controllable permeation. Differential scanning calorimetry (DSC), positron annihilation lifetimes (PAL), water swelling and water vapor permeability (WVP) were used to evaluate how the structure of the polyurethane (PU) and the temperature influence the free-volume holes size and the water vapor permeability (WVP) of the PU membranes. DSC study reveals that TSPU with a glass transition or a crystalline transition reversible phase shows an obvious phase-separated structure and a phase transition temperature (defined as switch temperature, T-s). PAL study indicates that the free-volume holes size of TSPU is closely related to the T-s. When the temperature is higher than the T-s, the ortho-positronium (o-Ps) lifetime (tau(3)) and the average radius (R) of free-volume holes of TSPU membrane increase dramatically. As a result, the WVP of TSPU membrane shows a dramatic increase. Additionally, the water swelling and the WVP of TSPU membrane are found to depend on the inner structure of the polymer, and they also give different responses to temperature variation. When the temperature is higher than the T-s, there is a significant increase of WVP from 3.80 kg/m(2) day to 7.63 kg/m(2) day for TSPU(a) and from 4.30 kg/m(2) day to 8.58 kg/m(2) day for TSPU(b), respectively. Phase transition accompanying significant changes in free-volume holes size and WVP can be used to develop "smart membranes" with functional gates and controllable gas permeation. (c) 2006 Elsevier B.V. All rights reserved.
机译:膜材料中可用的自由体积孔的大小和形状控制气体扩散的速度及其渗透性。基于该原理,合成了具有功能门的两个分段的热敏聚氨酯(TSPU)膜,即具有感测和响应外部热刺激的能力,并将其用于水蒸气可控的渗透。差示扫描量热法(DSC),正电子an灭寿命(PAL),水溶胀和水蒸气渗透率(WVP)用于评估聚氨酯(PU)的结构和温度如何影响自由体积孔的大小和水蒸气PU膜的渗透性(WVP)。 DSC研究表明,具有玻璃化转变或结晶转变可逆相的TSPU表现出明显的相分离结构和相变温度(定义为开关温度T-s)。 PAL研究表明,TSPU的自由体积孔尺寸与T-s密切相关。当温度高于T-s时,TSPU膜的自由体积孔的邻正电子(o-Ps)寿命(tau(3))和平均半径(R)急剧增加。结果,TSPU膜的WVP显示出显着的增加。另外,发现TSPU膜的水溶胀和WVP取决于聚合物的内部结构,并且它们还对温度变化给出不同的响应。当温度高于Ts时,TSPU(a)的WVP从3.80 kg / m(2)天显着增加到7.63 kg / m(2)天,而从4.30 kg / m(2)天显着增加。 TSPU(b)分别为8.58 kg / m(2)天。伴随自由体积孔尺寸和WVP的显着变化的相变可用于开发具有功能性浇口和可控气体渗透的“智能膜”。 (c)2006 Elsevier B.V.保留所有权利。

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