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Macro- and Nanoscopic Studies of Porous Polymer Swelling

机译:多孔聚合物肿胀的宏观和纳米镜型研究

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A commercial Amberlite XAD7HP resin was investigated as a typical porous polymer which swells in tetraethoxysilane (TEOS). TEOS appears to be an extremely effective polymer swelling agent; thus, it serves as an easily assimilable silica source in polymer silica composites. The present study discusses the application of light microscopy (LM) and positron annihilation lifetime spectroscopy (PALS) for the studies of macroscopic and microscopic features during the progress of polymer swelling. LM offers precise information on the swelling in the solvent vapor, especially for the well-defined, spherically shaped particles of the polymer. The swelling of a porous polymer consists of the swelling of pore walls and adsorption of the solvent on the internal surface of the walls. PALS provides an opportunity to recognize the sequence of solvent penetration into porous polymer particles. It allows in situ monitoring of the evolution of every free volume in the sample under study.
机译:研究了一种商业氨酰亚苄酸盐Xad7HP树脂作为典型的多孔聚合物,其在四乙氧基硅烷(TEOS)中溶胀。 Teos似乎是一种极有效的聚合物溶胀剂; 因此,它用作聚合物二氧化硅复合材料中易于可分化的二氧化硅源。 本研究讨论了光学显微镜(LM)和正电子湮没寿命谱(PALS)在聚合物溶胀过程中的宏观和微观特征研究中的应用。 LM在溶剂蒸汽中提供精确的信息,特别是对于聚合物的良好定义的球形颗粒。 多孔聚合物的膨胀由孔壁的溶胀和溶剂在壁的内表面上的吸附。 PALS提供了识别溶剂渗透序列的机会,进入多孔聚合物颗粒。 它允许原位监测在研究中的样本中每一个自由体积的演变。

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