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Effect of dangling chains on the structure and physical properties of a tightly crosslinked poly(ethylene glycol) network

机译:悬链对紧密交联聚乙二醇网络结构和物理性能的影响

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摘要

Major imperfections in crosslinked polymers include loose or dangling chain ends that lower the crosslink d., thereby reducing elastic recovery and increasing the solvent swelling. These imperfections are hard to detect, quantify and control when the network is initiated by free radical reactions. As an alternative approach, the sol-​gel synthesis of a model poly(ethylene glycol) (PEG-​2000) network is described using controlled amts. of bis- and mono-​triethoxy silyl Pr urethane PEG precursors to give silsesquioxane (SSQ, R-​SiO1.5) structures as crosslink junctions with a controlled no. of dangling chains. The effect of the no. of dangling chains on the structure and connectivity of the dried SSQ networks has been detd. by step-​crystn. differential scanning calorimetry. The role that micelle formation plays in controlling the sol-​gel PEG network connectivity has been studied by dynamic light scattering of the bis- and mono-​triethoxy silyl precursors and the networks have been characterized by 29Si solid state NMR, sol fraction and swelling measurements. These show that the dangling chains will increase the mesh size and water uptake. Compared to other end-​linked PEG hydrogels, the SSQ-​crosslinked networks show a low sol fraction and high connectivity, which reduces solvent swelling, degree of crystallinity and the crystal transition temp. The increased degree of freedom in segment movement on the addn. of dangling chains in the SSQ-​crosslinked network facilitates the packing process in crystn. of the dry network and, in the hydrogel, helps to accommodate more water mols. before reaching equil.
机译:交联聚合物的主要缺陷包括链端松散或悬空,从而降低了交联度d,从而降低了弹性回复率并增加了溶剂溶胀度。当网络由自由基反应引发时,这些缺陷很难检测,量化和控制。作为一种替代方法,使用受控amts描述了模型聚乙二醇(PEG-2000)网络的溶胶-凝胶合成。双和单三乙氧基甲硅烷基Pr氨基甲酸乙酯PEG前体产生倍半硅氧烷(SSQ,R-SiO1.5)结构作为交联结,具有受控的No.悬链。没有的效果。悬挂链对干SSQ网络的结构和连通性的影响已经被发现。一步一步地。差示扫描量热法。通过双-和单-三乙氧基甲硅烷基前体的动态光散射研究了胶束形成在控制溶胶-凝胶PEG网络连通性中的作用,并通过29Si固态NMR,溶胶分数和溶胀表征了网络测量。这些表明悬链会增加筛孔尺寸和吸水率。与其他末端连接的PEG水凝胶相比,SSQ交联的网络显示出较低的溶胶分数和较高的连通性,从而降低了溶剂溶胀,结晶度和晶体转变温度。附加模块上片段移动的自由度增加。 SSQ交联网络中悬链的排列有助于晶体的包装过程。干燥网络的一部分,并且在水凝胶中有助于容纳更多的水分子。在达到平衡之前。

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