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本工作研究了丁二烯在乙酰基丙酮镍-一氯二烷基铝体系中聚合的一般规律、聚合动力学及链转移过程。实验结果表明:聚合速率对单体浓度、主催化剂(镍络盐)浓度均呈一级关系,而对一氯二异丁基铝浓度呈二级关系,即 -(dM/dt)=k[M][NiA_2][Al(i-C_4H_9)_2Cl]~2对一氯二乙基铝浓度则呈1/2级关系,即 -(dM/dt)=k[M][NiA_2][Al(C_2H_5)_2Cl]~(1/2)对这二种体系反应级数的不同作了解释。 实验测得丁二烯在乙酰基丙酮镍-一氯二异丁基铝体系中聚合的总活化能为8.0±0.5千卡/克分子,而在一氯二乙基铝体系中为 8.9±0.5千卡/克分子。 研究了丁二烯在本体系中聚合时单体浓度、主助催化剂浓度、聚合转化率、溶剂以及某些添加剂等因素对聚合物分子量的影响。结果表明:聚合物的分子量随单体浓度的增大而增大;随镍组份浓度的增大而减小;当体系中水分含量很低时,一氯二乙基铝浓度的改变对聚合物分子量基本无影响;在5—60%转化率及0—35℃范围内聚合物分子量变化不明显;庚烷中所得聚合物的分子量比苯中所得者低;添加水、吡啶、三溴化铝、三乙基铝、甲基环己烷及蒽等都不能显著提高聚合物的分子量。 计算链转移常数,得到对含镍组份为 84,对单体为 1.9× 10~(-3),终止常数为 2.3×10~(-3)。因而得知本体系中主要的链转移过程是 相似文献
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Styrene-2-(methylsulfinyl)ethyl methacrylate copolymer-supported MCl3 complexes, where M = La, Pr, Nd, Eu, Ho, Er, Tm, and Yb, were prepared and characterized by IR spectroscopy. The catalytic activity of the polymer-supported NdCl3-(iso-Bu)3Al system towards stereospecific polymerisation of butadiene was 2-3 times higher than that of NdCl3-(iso-Bu)3Al-DMSO system. The cis-1,4 content of polybutadiene formed was >98%. 相似文献
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Nd(OR)3-nCln-AlEt3催化体系对丁二烯的聚合 II.聚合物微观结构和催化剂诱导效应指数的关系 总被引:1,自引:0,他引:1
With a new series of binary catalyst Nd(OR)3-nCln-AlEt3 prepared in our laboratory, the effect to catalyst composition on the microstructure of polybutadiene was studied in detail. A linear relationship is found between the variation of the microstructure of the polymer obtained and the iductive effect index (I) which reprepresents the magnitude of the displacement of paired valence electrons on transition metal-halogen bond (MT-X) of the catalyst. This linear relationship also holds in dealing with the data published in the literature. 相似文献
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