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Preparation of Butadiene-Isoprene Copolymer with High Vinyl Contents by Al(OPhCH3)(i-Bu)2/MoO2Cl2∙TNPP

机译:用Al(OPHCH3)(I-Bu)2 / moo2Cl2∙TNPP,用高乙烯基含量的丁二烯 - 异戊二烯共聚物制备丁二烯 - 异戊二烯共聚物

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摘要

In this study, a butadiene-isoprene coordination polymerization was initiated by a binary molybdenum (Mo)-based catalytic system consisting of modified MoO2Cl2 as the primary catalyst, triethyl aluminum substituted by m-cresol as the co-catalyst and tris(nonyl phenyl) phosphate (TNPP) as the ligand. The effects of the amount of catalyst and type of co-catalyst were investigated in detail. Experimental results indicated that when the butadiene-isoprene coordination polymerization was initiated by the binary Mo-based catalytic system, the monomer conversion could reach 90%. The resulting butadiene units were primarily based on 1,2-structures, and the reactivity ratios of butadiene and isoprene were 1.13 and 0.31, respectively. The reaction in the catalytic system was attributed to the non-ideal and non-constant ratio copolymerization. When the addition of isoprene monomers was relatively low, the isoprene units on the butadiene-isoprene copolymers were primarily based on the 1,2- and 3,4-structures. Moreover, the orientation of active centers to 1,2- and 3,4-structures gradually decreased with an increase in the addition of isoprene monomers, which resulted in the generation of high vinyl butadiene-isoprene copolymers.
机译:在该研究中,通过由改性的MOO2Cl2组成的二元钼(MO)基于催化剂,作为初级催化剂,由M-甲酚作为助催化剂和三(壬基苯基)取代的三乙基铝来引发丁二烯 - 异戊二烯配位聚合。磷酸盐(TNPP)作为配体。详细研究了催化剂量和助催化剂的效果。实验结果表明,当通过二元钼催化系统引发丁二烯 - 异戊二烯配位聚合时,单体转化率可以达到90%。所得丁二烯单元主要基于1,2结构,丁二烯和异戊二烯的反应性比分别为1.13和0.31。催化体系中的反应归因于非理想和非恒定的共聚。当加入异戊二烯单体相对较低时,丁二烯 - 异戊二烯共聚物上的异戊二烯单元主要基于1,2-和3,4-结构。此外,随着异戊二烯单体的增加,活性中心至1,2-和3,4-结构的取向随着异戊二烯单体的增加而逐渐降低,这导致产生高乙烯基丁二烯 - 异戊二烯共聚物的产生。

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