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Biodegradable Shape-Memory Polymer Networks:Characterization with Solid-State NMR

机译:可生物降解的形状记忆聚合物网络:固态NMR表征

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Polymer networks made from oligo[(L-lactide-ran-glycolide)]dimethacrylates by UV curing are characterized by solid-state NMR.These polymer networks show a shape-memory effect and could be used as temporary implant materials for medical applications.The ~(13)C spectra enable the direct determination of the cross-link density by a signal at 44 ppm.This is used to correlate its intensity with the chain segment length as well as to study the kinetics of photo-cross-linking.The latter is compared with the gel content,and it is found that the NMR method detects the real amount of covalent crosslinks whereas the gel content also depends on influences from constraints such as physical entanglements.The shape-memory effect of the polymer networks can be followed as well by ~1H double quantum buildup curves of samples that are programmed by stretching.Results indicate the reversibility of the shape-memory process.
机译:由低聚[(L-丙交酯-乙交酯-乙交酯)]二甲基丙烯酸酯通过紫外线固化制备的聚合物网络通过固态NMR表征,这些聚合物网络表现出形状记忆效应,可用作医学应用的临时植入材料。 〜(13)C光谱可以通过44 ppm的信号直接确定交联密度,该信号用于将其强度与链段长度相关联并研究光交联的动力学。将其与凝胶含量进行比较,发现NMR方法可检测共价交联的真实数量,而凝胶含量还取决于物理缠结等约束条件的影响。可以追踪聚合物网络的形状记忆效应以及通过拉伸编程的〜1H双量子积累曲线。结果表明形状记忆过程是可逆的。

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