首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Synthesis and characterization of cis-polybutadiene-block-syn-polystyrene copolymers with a cyclopentadienyl titanium trichloride/modified methylaluminoxane catalyst
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Synthesis and characterization of cis-polybutadiene-block-syn-polystyrene copolymers with a cyclopentadienyl titanium trichloride/modified methylaluminoxane catalyst

机译:环戊二烯基三氯化钛/改性甲基铝氧烷催化剂制备顺-聚丁二烯嵌段-顺-聚苯乙烯共聚物及其表征

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This article reports a practical method for preparing cis-polybutadiene-block-syn-polystyrene (cis-PB-b-syn-PS) copolymers with long crystallizable syndiotactic polystyrene (syn-PS) segments chemically bonded with high cis-1,4-polybutadiene segments through the addition of styrene (ST) to a cis-specific 1,1,3-butadiene (BD) living catalyst composed of cyclopentadienyl titanium trichloride (CpTiCl3) and modified methylaluminoxane (MMAO). The incorporation of ST into the living polybutadiene (PB) precursor remarkably depended on the polymerization temperature. A low temperature (-20 degreesC) suppressed the rate of ST incorporation, but a high temperature (50 degreesC) tended to decompose the livingness of the active species and enhance the rate of the aspecific ST polymerization initiated by MMAO. Consequently, temperatures of 0-25 degreesC seemed to be best for this copolymerization system. Because of the absence of ST livingness, the final products contained not only the block copolymer but also the homopolyrners. Attempts to isolate the block copolymer were carried out with common solvent fractionation techniques, but the results were not sufficient. Cross-fractionation chromatography was, therefore, used for the isolation of the cis-PB-b-syn-PS copolymer. The presence of long Syn-PS segments was confirmed by the observation of a strong endothermic peak at 260 degreesC in the differential scanning calorimetry curve. (C) 2004 Wiley Periodicals, Inc.
机译:本文报道了一种实用的方法,用于制备具有长结晶的间同立构聚苯乙烯(syn-PS)链段的顺式-聚丁二烯嵌段-syn-聚苯乙烯(cis-PB-b-syn-PS)共聚物,该链段与高顺式1,4-高化学键合通过将苯乙烯(ST)添加到由环戊二烯基三氯化钛(CpTiCl3)和改性的甲基铝氧烷(MMAO)组成的顺式1,1,3-丁二烯(BD)活性催化剂中来制备聚丁二烯链段。 ST向活性聚丁二烯(PB)前体中的掺入明显取决于聚合温度。低温(-20℃)抑制了ST的掺入速率,但是高温(50℃)倾向于分解活性物质的活性,并提高了由MMAO引发的非特异性ST聚合的速率。因此,对于该共聚体系,0-25℃的温度似乎是最佳的。由于没有ST活性,因此最终产物不仅包含嵌段共聚物,还包含均聚物。尝试用常规溶剂分馏技术分离嵌段共聚物,但结果不足。因此,将交叉分级色谱法用于分离顺式-PB-b-syn-PS共聚物。通过在差示扫描量热曲线中在260℃观察到强吸热峰,证实了长的Syn-PS片段的存在。 (C)2004年Wiley Periodicals,Inc.

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