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Carboxyl-Terminated Polybutadiene Poly(styrene-co-4-vinylpyridine) Supramolecular Thermoplastic Elastomers and Their Shape Memory Behavior

机译:羧基封端的聚丁二烯聚(苯乙烯-co-4-乙烯基吡啶)超分子热塑性弹性体及其形状记忆行为

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摘要

Aiming at an easy-processing metallo-supramolecular polymer which possesses the shape memory property and large deformation ability, we designed a simple metal coordination complex: the blends of zinc-neutralized carboxyl-terminated polybutadiene and poly(styrene-co-4-vinylpyridine) (PSVP). The two polymers are tightly bound due to the metal coordination interactions between Zn2+ ions from carboxyl-terminated poly butadiene and the pyridine group of the PSVP. The elastomer had reasonably good mechanical properties and was thermoplastic. Improvements in mechanical properties of the blends were realized in the rheology analysis compared with a blend without the introduction of the zinc salt. Small-angle X-ray scattering characterization showed that the microstructure of the elastomeric blend consisted of microphase-separated glassy nanodomains of principally PSVP, which served as cross-link junctions that were connected with polybutadiene chains. The elastomer exhibited good shape memory properties for large deformations, and its shape recovery efficiency could reach 81% in the first cycle and could reach 97% +/- 1% in the following seven cycles.
机译:针对具有形状记忆性能和大变形能力的易于加工的金属超分子聚合物,我们设计了一种简单的金属配位化合物:锌中和的羧基封端的聚丁二烯与聚(苯乙烯-co-4-乙烯基吡啶)的混合物(PSVP)。由于羧基端基聚丁二烯的Zn2 +离子与PSVP的吡啶基之间的金属配位相互作用,使两种聚合物紧密结合。弹性体具有相当好的机械性能,并且是热塑性的。与未引入锌盐的共混物相比,在流变学分析中实现了共混物机械性能的改善。小角X射线散射表征表明,弹性体共混物的微观结构由主要是PSVP的微相分离的玻璃状纳米域组成,充当与聚丁二烯链连接的交联结。该弹性体对大变形表现出良好的形状记忆性能,并且其形状恢复效率在第一循环中可以达到81%,并且在随后的七个循环中可以达到97%+ /-1%。

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