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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Crystallization of micelles and matrix in dilute diblock copolymer/homopolymer solutions
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Crystallization of micelles and matrix in dilute diblock copolymer/homopolymer solutions

机译:稀煤共聚物/均聚物溶液中胶束和基质的结晶

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The crystallization, morphology, and crystalline structure of dilute solid solutions of tetrahydrofuran-methyl methacrylate diblock copolymer (PTHF-b-PMMA) in poly(ethylene oxide) (PEO) and PTHF have been studied with differential scanning calorimetry (DSC), X-ray, and optical microscopy. This study provides a new insight into the crystallization behavior of block copolymers. For the dilute PTHF-b-PMMA/PEO system containing only 2 to 7 wt % of PTHF content, crystallization of the PTHF micellar core was detected both on cooling and on heating. Compared the crystallization of the PTHF in the dilute solutions with that in the pure copolymer, it was found that the crystallizability of the PTHF micellar core in the solution is much greater than that of the dispersed PTHF microdomain in the pure copolymer. The stronger crystallizability in the solution was presumably due to a softened PMMA corona formed in the solution of the copolymer with PEG. However, the "soft" micelles formed in the solution (meaning that the glass transition temperatures (T-g) of the micelle is lower than the T-m of the matrix phase) showed almost no effects on the spherulitic morphology of the PEO component, compared with that of the pure PEO sample. In contrast, significant effects of the micelles with a "hard" PMMA core (meaning that the T-g of the core is higher than the T-m of the PTHF homopolymer) on the nucleation, crystalline structure, and spherulitic morphology were observed for the dilute PTHF-b-PMMA/PTHF system. (C) 1998 John Wiley & Sons, Inc. [References: 18]
机译:用差示扫描量热法(DSC)研究了聚(环氧乙烷)(PEO)和PTHF中的四氢呋喃 - 甲基丙烯酸甲酯二嵌段二嵌段共聚物(PTHF-B-PMMA)的稀固溶液的结晶,形态和晶体结构。射线和光学显微镜。该研究提供了对嵌段共聚物的结晶行为的新洞察力。对于仅含有2至7wt%的PTHF含量的稀释PTHF-B-PMMA / PEO系统,在冷却和加热时检测PTHF胶束芯的结晶。将PTHF的结晶与纯共聚物中的稀溶液中的结晶相比,发现溶液中PTHF胶束核的结晶性远大于纯共聚物中分散的PTHF微域的结晶性。溶液中的更强的结晶性可能是由于在与PEG的共聚物溶液中形成的软化的PMMA电晕。然而,在溶液中形成的“软”胶束(意味着胶束的玻璃化转变温度(Tg)低于基质阶段的Tm),与此相比,对PEO组件的球形形态几乎没有影响纯净的样品。相反,胶束与“硬”PMMA芯的显着影响(意味着核心的核心的Tg高于Pthf均聚物的Tm),对于稀释的Pthf观察到核心,结晶结构和球晶形态, B-PMMA / PTHF系统。 (c)1998年John Wiley&Sons,Inc。[参考文献:18]

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