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Phase behaviors of supramolecular graft copolymers with reversible bonding

机译:具有可逆键合的超分子接枝共聚物的相行为

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Phase behaviors of supramolecular graft copolymers with reversible bonding interactions were examined by the random-phase approximation and real-space implemented self-consistent field theory. The studied supramolecular graft copolymers consist of two different types of mutually incompatible yet reactive homopolymers, where one homopolymer (backbone) possesses multifunctional groups that allow second homopolymers (grafts) to be placed on. The calculations carried out show that the bonding strength exerts a pronounced effect on the phase behaviors of supramolecular graft copolymers. The length ratio of backbone to graft and the positions of functional groups along the backbone are also of importance to determine the phase behaviors. Phase diagrams were constructed at high bonding strength to illustrate this architectural dependence. It was found that the excess unbounded homopolymers swell the phase domains and shift the phase boundaries. The results were finally compared with the available experimental observations, and a well agreement is shown. The present work could, in principle, provide a general understanding of the phase behaviors of supramolecular graft copolymers with reversible bonding.
机译:超分子接枝共聚物具有可逆键相互作用的相行为通过随机相近似和实空间实现的自洽场理论进行了检验。所研究的超分子接枝共聚物由两种不同类型的互不相容但具有反应性的均聚物组成,其中一种均聚物(骨架)具有允许第二种均聚物(接枝)置于其上的多功能基团。进行的计算表明,结合强度对超分子接枝共聚物的相行为具有显着影响。骨架与接枝的长度比以及沿着骨架的官能团的位置对于确定相行为也很重要。相图以高结合强度构建,以说明这种体系结构依赖性。发现过量的未结合的均聚物使相域膨胀并改变相边界。最后将结果与可用的实验观察结果进行比较,并显示出很好的一致性。原则上,本发明可以提供对具有可逆键合的超分子接枝共聚物的相行为的一般理解。

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