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Preparation of Microporous Polypropylene/Titanium Dioxide Composite Membranes with Enhanced Electrolyte Uptake Capability via Melt Extruding and Stretching

机译:通过熔体挤出和拉伸制备具有增强的电解质吸收能力的微孔聚丙烯/二氧化钛复合膜

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摘要

In this work, a blending strategy based on compounding the hydrophilic titanium dioxide (TiO2) particles with the host polypropylene (PP) pellets, followed by the common membrane manufacture process of melt extruding/annealing/stretching, was used to improve the polarity and thus electrolyte uptake capability of the PP-based microporous membranes. The influence of the TiO2 particles on the crystallinity and crystalline orientation of the PP matrix was studied using differential scanning calorimetry (DSC), X-ray diffraction (XRD), and infrared dichroic methods. The results showed that the TiO2 incorporation has little influence on the oriented lamellar structure of the PP-based composite films. Investigations of the deformation behavior indicated that both the lamellar separation and interfacial debonding occurred when the PP/TiO2 composite films were subjected to uniaxial tensile stress. The scanning electron microscopy (SEM) observations verified that two forms of micropores were generated in the stretched PP/TiO2 composite membranes. Compared to the virgin PP membrane, the PP/TiO2 composite membranes especially at high TiO2 loadings showed significant improvements in terms of water vapor permeability, polarity, and electrolyte uptake capability. The electrolyte uptake of the PP/TiO2 composite membrane with 40 wt % TiO2 was 104%, which had almost doubled compared with that of the virgin PP membrane.
机译:在这项工作中,采用了基于将亲水性二氧化钛(TiO2)颗粒与主体聚丙烯(PP)粒料混合,然后通过熔融挤出/退火/拉伸的普通膜制造工艺进行共混的策略,以改善极性,因此PP基微孔膜的电解质吸收能力。使用差示扫描量热法(DSC),X射线衍射(XRD)和红外分色法研究了TiO2颗粒对PP基体结晶度和晶体取向的影响。结果表明,TiO2的掺入对PP基复合膜取向片状结构影响很小。对变形行为的研究表明,当PP / TiO2复合膜承受单轴拉伸应力时,层状分离和界面剥离均发生。扫描电子显微镜(SEM)观察证实,在拉伸的PP / TiO2复合膜中产生了两种形式的微孔。与原始PP膜相比,PP / TiO2复合膜,尤其是在高TiO2负载下,在水蒸气透过率,极性和电解质吸收能力方面均表现出显着改善。具有40 wt%TiO2的PP / TiO2复合膜的电解质吸收率为104%,与原始PP膜相比几乎增加了一倍。

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