首页> 外文期刊>Macromolecules >Copolymerization of styrene with butadiene and isoprene catalyzed by the monocyclopentadienyl titanium complex Ti(eta(5)-C5H5)(eta(2)-MBMP)Cl
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Copolymerization of styrene with butadiene and isoprene catalyzed by the monocyclopentadienyl titanium complex Ti(eta(5)-C5H5)(eta(2)-MBMP)Cl

机译:单环戊二烯钛配合物Ti(eta(5)-C5H5)(eta(2)-MBMP)Cl催化的苯乙烯与丁二烯和异戊二烯的共聚合

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摘要

Polymerization of butadiene, isoprene, and styrene was investigated using the catalyst Ti(eta(5)-C5H5)-(eta(2)-MBMP)Cl (1) (MBMP = 2,2'-methylenebis(6-tert-butyl-4-methylphenoxo)) activated with methylaluminoxane (MAO). Syndiotactic polystyrene and cis-1,4-polybutadiene were obtained at 50 degrees C, similarly to other monocyclopentadienyl titanium catalysts previously reported. On the contrary, the 1/MAO catalyst resulted extremely active in isoprene polymerization, producing polymers with mainly cis-1,4 structure and containing head-to-head and tail-to-tail enchainments of the monomer units in a molar concentration of 21.5%. Binary copolymerization of styrene with butadiene yielded block copolymers containing segments of cis-1,4-polybutadiene and crystalline syndiotactic polystyrene. The reactivity ratios r(1) = 70 and r(2) = 1.2 determined by NMR methods confirmed the blocky distribution of the monomers in the copolymer chain. The AFM of copolymers rich in styrene (x(s) = 0.77-0.81) showed a microphase separation of polybutadiene domains in micrometric scale (average radius 800 nm). Novel copolymers of styrene with isoprene were synthesized using the 1/MAO catalyst. The C-13 NMR chemical shifts of the carbon atoms diagnostic of the different monomer diads and triads were predicted and assigned using properly calculated additive shift factors. The reactivity ratios r(1) = 18 and r(2) = 0.3 were evaluated by means of NMR methods. Despite the syndiotactic arrangement of the styrene homosequences, the styrene-co-isoprene polymers are completely soluble in organic solvents and completely amorphous also at high styrene concentration.
机译:丁二烯,异戊二烯和苯乙烯的聚合反应使用催化剂Ti(eta(5)-C5H5)-(eta(2)-MBMP)Cl(1)(MBMP = 2,2'-亚甲基双(6-叔丁基) -4-甲基苯氧基))被甲基铝氧烷(MAO)活化。与先前报道的其他单环戊二烯基钛催化剂相似,在50℃下获得间规聚苯乙烯和顺式1,4-聚丁二烯。相反,1 / MAO催化剂在异戊二烯聚合反应中具有极高的活性,产生的聚合物主要为顺式1,4结构,并含有摩尔浓度为21.5的单体单元的头对头和尾对尾链%。苯乙烯与丁二烯的二元共聚制得的嵌段共聚物含有顺式1,4-聚丁二烯和结晶间规聚苯乙烯的链段。通过NMR方法确定的反应性比率r(1)= 70和r(2)= 1.2证实了单体在共聚物链中的嵌段分布。富含苯乙烯的共聚物的AFM(x(s)= 0.77-0.81)在微米尺度(平均半径800 nm)下显示了聚丁二烯域的微相分离。使用1 / MAO催化剂合成了苯乙烯与异戊二烯的新型共聚物。使用正确计算的累加位移因子预测并确定了诊断不同单体二单元组和三单元组的碳原子的C-13 NMR化学位移。通过NMR方法评估反应率r(1)= 18和r(2)= 0.3。尽管苯乙烯均聚物的间同排列方式,但苯乙烯-共异戊二烯聚合物完全溶于有机溶剂,并且即使在高苯乙烯浓度下也完全无定形。

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