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首页> 外文期刊>Macromolecules >Ordered structure in blends of block copolymers. 5. Blends of lamella-forming block copolymers showing both microphase separation involving unique morphological transitions and macrophase separation
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Ordered structure in blends of block copolymers. 5. Blends of lamella-forming block copolymers showing both microphase separation involving unique morphological transitions and macrophase separation

机译:嵌段共聚物共混物中的有序结构。 5.形成薄片的嵌段共聚物的共混物,显示出涉及独特形态转变的微相分离和大相分离

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It is pointed out theoretically that the ordered morphology in the binary mixtures of A-B type diblock copolymers, ((A-B)(1)/(A-B)(2)), depends not only on the compositions of block copolymers (i.e., the volume fraction of the A block, f(A1),f(A2)) but also on the relative chain-length differences of the constituent copolymers (alpha (j) for jth (j = A or B) block where alpha (j) is defined by alpha (j) = (N-j(2) - N-j(1))N-j(1) and N-j(i) (i = 1 or 2) denotes the polymerization index of the jth block chain in the ith block copolymer (A-B)(i)) and blend composition (i.e., the mole fraction of(A-B)(2) having a larger molecular weight, q(2)), whereas the morphology in the single component A-B diblock copolymer system in a strong segregation limit solely depends on the composition (f(A)) We explored ordered morphology of binary mixtures of lamella-forming polystyrene (PS)-block-polyisoprene (PI), (PS-PI), with given block compositions (f(PS1) = 0.44, f(PS2) = 0.46) and given relative chain-length differences (alpha (PS) = 6.18, alpha (PI) = 5.68) as a function of q(2). Our results revealed both the regime where only microphase separation occurred (q(2) = 0 and 0.179 less than or equal to q(2) less than or equal to 1) and the regime where macrophase separation occurred as well (0.003 less than or equal to q(2) less than or equal to 0.127). In the microphase separation regime, we found a unique morphological transition between lamellar and cylindrical morphology with q(2) whose trend is consistent with the theoretical prediction by Lyatskaya et al. (Polymer 1992, 33, 343). In the macrophase separation regime we found the two coexisting macrophases with cylindrical and lamellar morphology. The miscibility gap of the two PS-PIs, with respect to q(2) for the macrophase separation, was found to be consistent with a theoretical prediction by Matsen. [References: 56]
机译:从理论上指出,AB型二嵌段共聚物的二元混合物中的有序形态((AB)(1)/(AB)(2))不仅取决于嵌段共聚物的组成(即体积分数) A嵌段f(A1),f(A2))的构型,但也取决于构成共聚物的相对链长差(第j个(j = A或B)嵌段的alpha(j),其中定义了alpha(j) α(j)=(Nj(2)-Nj(1))Nj(1)和Nj(i)(i = 1或2)表示第i个嵌段共聚物(AB)中第j个嵌段链的聚合指数(i))和共混物组成(即,(AB)(2)的摩尔分数具有较大的分子量q(2)),而单组分AB二嵌段共聚物体系在强偏析限度下的形态仅取决于在组成(f(A))上,我们研究了给定的嵌段组成(f(PS1)= 0.44, f(PS2)= 0.46)并给出相对柴n长度差异(α(PS)= 6.18,α(PI)= 5.68)是q(2)的函数。我们的结果揭示了仅发生微相分离的状态(q(2)= 0和小于或等于q(2)小于或等于1的0.179)和也发生大相分离的状态(小于或等于0.003的状态)等于q(2)小于或等于0.127)。在微相分离过程中,我们发现了q(2)的层状和圆柱状形态之间的独特形态转换,其趋势与Lyatskaya等人的理论预测相符。 (聚合物1992,33,343)。在大相分离过程中,我们发现了两个共存的大相具有圆柱形和层状形态。发现两个PS-PI的混相间隙相对于用于宏观相分离的q(2),与Matsen的理论预测一致。 [参考:56]

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