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Shear-Induced Network-to-Network Transition in a Block Copolymer Melt

机译:嵌段共聚物熔体中剪切引起的网络到网络的转变

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摘要

A tricontinuous (10,3)c network phase is documented in a poly(cyclohexylethylene-b-ethylethylne-b-ethylene) triblock copolymer melt based on small-angle x-ray scattering. Application of shear transforms the self-assembled soft material into a single crystal (10, 3)d network while preserving the short-range threefold connector geometry. Long-range topological restructuring reduces the space group symmetry, from Fddd to Pnna, maintaining orthorhombic lattice symmetry. Both phases are stable to long time annealing, indicative of nearly degenerate free energies and prohibitive kinetic barriers.
机译:基于小角度X射线散射,在聚(环己基乙烯-b-乙炔基-b-乙烯)三嵌段共聚物熔体中记录了三连续(10,3)c网络相。剪切的应用将自组装的软材料转变为单晶(10、3)d网络,同时保留了短距离三重连接器的几何形状。远程拓扑重组降低了从Fddd到Pnna的空间群对称性,保持了正交晶格对称性。这两个阶段对长时间退火都是稳定的,表明几乎简并的自由能和禁止的动力学势垒。

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