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Exfoliated block copolymer/silicate nanocomposites by one-pot, one-step in-situ living polymerization from silicate-anchored multifunctional initiator

机译:硅酸盐锚定的多功能引发剂通过一锅一步原位活性聚合剥离的嵌段共聚物/硅酸盐纳米复合材料

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摘要

Poly(styrene-b-caprolactone)/silicate nanocomposites were prepared via one-pot, one-step in-situ living polymerization from a silicate-anchored bifunctional initiator. The random dispersion of the silicate layers in the polymer matrix was confirmed by both XRD and STEM. The polymer chains were attached to the surface of the silicate layers at the junction between the two blocks. SEC and NMR confirmed the block structure of the polymer. Through simultaneous incorporation of the initiator and benzyltrimethylammonium salt as a noninitiator into the silicate nanocomposites containing higher molecular weight polymers were obtained. The molecular weights of the polymers and the silicate content of the nanocomposites were also controlled. Characterization by XRD and DSC showed that the poly(caprolactone) segment existed in a crystalline state.
机译:聚(苯乙烯-b-己内酯)/硅酸盐纳米复合材料是通过一锅,一步法从硅酸盐固定的双功能引发剂中进行原位活性聚合制备的。 XRD和STEM均证实了硅酸盐层在聚合物基质中的无规分散。聚合物链在两个嵌段之间的连接处连接至硅酸盐层的表面。 SEC和NMR证实了聚合物的嵌段结构。通过同时将引发剂和作为非引发剂的苄基三甲基铵盐掺入到包含较高分子量聚合物的硅酸盐纳米复合材料中。还控制了聚合物的分子量和纳米复合材料的硅酸盐含量。通过XRD和DSC表征表明,聚己内酯链段以结晶状态存在。

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