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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Structured Poly(divinylbenzene-co-chloromethylstyrene) Microspheres by Thermal Imprinting Precipitation Polymerization
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Structured Poly(divinylbenzene-co-chloromethylstyrene) Microspheres by Thermal Imprinting Precipitation Polymerization

机译:热压印沉淀聚合结构化聚二乙烯基苯-co-氯甲基苯乙烯)微球

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摘要

The formation of monodisperse, crosslinked, thermally inscribed core-shell microspheres by free radical precipitation copolymerization of chloromethylstyrene and divinylbenzene in acetonitrile is reported. The radial density profiles of these microspheres match the thermal profiles used during copolymerization: stepping down the polymerization temperature from 75 degrees C to 65 degrees C several hours into the copolymerization led to core-shell microspheres with porous cores and denser shells, while stepping up the polymerization temperature from 68 degrees C to 78 degrees C during the polymerization led to formation of microspheres with denser cores and more swellable shells. Microsphere size distributions and internal morphologies were studied using optical and transmission electron microscopy. The change in network swellability with temperature was compared with model studies of aggregation of corresponding nanogels, both in acetonitrile and in related solvent systems, as a function of temperature, indicating the theta-temperature for this copolymer/solvent system to be around 30 degrees C. (C) 2015 Wiley Periodicals, Inc.
机译:据报道,氯甲基苯乙烯和二乙烯基苯在乙腈中的自由基沉淀共聚形成了单分散的,交联的,热内接的核-壳微球。这些微球的径向密度分布与共聚过程中使用的热分布相匹配:将聚合温度从75摄氏度降低到65摄氏度数小时进入共聚反应,从而形成具有多孔核和致密壳的核-壳微球,同时提高了聚合过程中,聚合温度从68摄氏度到78摄氏度导致形成了具有更密实的核和更易膨胀的壳的微球。使用光学和透射电子显微镜研究了微球的尺寸分布和内部形态。将网络可溶胀性随温度的变化与相应纳米凝胶在乙腈和相关溶剂体系中随温度变化的模型研究进行了比较,表明该共聚物/溶剂体系的θ温度约为30摄氏度(C)2015 Wiley Periodicals,Inc.

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