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Microphase separation in multiblock copolymer melts: Nonconventional morphologies and two-length-scale switching

机译:多嵌段共聚物熔体中的微相分离:非常规形态和两尺度转换

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The phase behavior of A(fmN)(B(N/2)A(N/2))B(1-f)mN multiblock copolymer melts is studied within the weak segregation theory. The interplay between ordering on different length scales is shown to cause dramatic changes both in the ordered phase symmetry and periodicity upon small variation of the architectural parameters of the macromolecules. Phase diagrams are presented in the (f,chi N) plane (chi is the Flory-Huggins parameter) for various values of the architecture parameters n and m. Near the critical surface, i.e., for (f-0.5)(2) 1, such nonconventional cubic phases as the face-centered cubic (FCC), simple cubic (SC), (double) gyroid, and the so-called BCC2 (single gyroid) are found to be stable. The lamellar morphology is shown to be replaced by BCC2, FCC, or SC (depending on the structural parameters) as the most stable low-temperature phase. (c) 2006 American Institute of Physics.
机译:在弱偏析理论下研究了A(fmN)(B(N / 2)A(N / 2)B(1-f)mN多嵌段共聚物熔体的相行为。结果表明,在大分子结构参数的微小变化下,不同长度尺度上有序之间的相互作用会导致有序相对称性和周期性的剧烈变化。在(f,chi N)平面(chi是Flory-Huggins参数)中显示了架构参数n和m的各种值的相图。在临界表面附近,即对于(f-0.5)(2) 1,诸如面心立方(FCC),简单立方(SC),(双)螺线管和所谓的非常规立方相发现BCC2(单个回旋)稳定。层状形态已被BCC2,FCC或SC(取决于结构参数)替代,是最稳定的低温相。 (c)2006年美国物理研究所。

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