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Synthesis of High-Trans 1, 4-Butadiene/Isoprene Copolymers by Anionic Polymerization Using Barium Salts

机译:使用钡盐通过阴离子聚合合成高反转1,4-丁二烯/异戊二烯共聚物

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High trans-1,4-butadiene-isoprene copolymer (TBIR) is an ideal material for high performa nce radial tires due to its low heat build-up, outstanding fatigue durability, good wear characteristics and low temperature performance. High trans-1,4-butadiene-isoprene copolymer (TBIR), initiated by n-butyllithium (n-BuLi) ,triisobutyl aluminium [Al(I-Bu)3] and an organic barium salt, was synthesized and characterized. Thymol barium (BAT) was synthesized via thymol and barium hydroxide, the preparation of barium salt of di(ethylene glycol) ethyl ether (BaDEGEE) was similar to BAT. Kinetics behaviors of the copolymerization were researched through dilatometer method. Crystallization Behaviors and Glass transition temperature (Tg) were measured by Differential Scanning Calorimetry (DSC). The glass-transition temperatures (Tg) were -8 4 °Cthereabout. An analysis using IR spectra and 1 H-NMR spectra indicated that the TBIR was belong to high-trans-1,4-configuration polymers. The chemical structure of these copolymers was characterized by a high-trans 1,4-configuration: the trans 1,4-content of Ip units was greater than 85% ,and the trans 1,4-content of Bd units was greater than 70%.
机译:高反式-1,4-丁二烯 - 异戊二烯共聚物(TBIR)是一种适用于高效NCE径向轮胎的理想材料,由于其低热堆积,出色的疲劳耐久性,良好的磨损特性和低温性能。由正丁基锂(N-釜),三异丁基铝[Al(I-Bu)3]和有机钡盐引发的高反式1,4-丁二烯 - 异戊二烯共聚物(TBIR)被合成并表征。通过静脉和氢氧化钡合成胸腺醇钡(BAT),二维(乙二醇)乙醚(Badegee)的钡盐的制备类似于蝙蝠。通过膨胀计方法研究了共聚的动力学行为。通过差示扫描量热法(DSC)测量结晶行为和玻璃化转变温度(TG)。玻璃过渡温度(Tg)为-8 4°Chereabout。使用IR光谱和1 H-NMR光谱的分析表明Tbir属于高反线-1,4-构型聚合物。这些共聚物的化学结构的特征在于高反线反应1,4 - 构型:IP单元的反式1,4含量大于85%,BD单元的反式1,4含量大于70 %。

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