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Double periodic lamellar-in-lamellar structure in multiblock copolymer melts with competing length scales

机译:具有竞争长度尺度的多嵌段共聚物熔体中的双周期性层状层状结构

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摘要

The results of a detailed theoretical investigation of the phase behavior of A(m)-b-(B-b-A)(n) multiblock copolymer melts are presented for the special case of m = 20 and n = 10. The presence of two strongly different molecular length scales results in the formation of a large-length-scale lamellar structure of alternating A(20) and (B-b-A)(10) layers on cooling. On further cooling, the (B-b-A)(10) layers subsequently transform internally into small-length-scale layers of the A and B blocks: a lamellar-in-lamellar morphology. The final structure consists of an alternation of one "thick" layer and seven "thin" layers and compares favorably with recent experimental results of Matsushita and co-workers on slightly different systems.
机译:针对m = 20和n = 10的特殊情况,给出了对A(m)-b-(BbA)(n)多嵌段共聚物熔体的相行为进行详细理论研究的结果。存在两种强烈不同的分子长度尺度导致冷却时交替形成A(20)和(BbA)(10)层的大尺度层状结构的形成。进一步冷却后,(B-b-A)(10)层随后在内部转变​​为A和B块的小长度尺度层:层状层状形态。最终结构由一个“厚”层和七个“薄”层的交替组成,并且与松下及其同事在稍有不同的系统上的最新实验结果相比具有优势。

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