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首页> 外文期刊>Journal of Applied Polymer Science >Synthesis of butyl rubber in hexane using a mixture of Et2AlCl and EtAlCl2 in the initiating system
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Synthesis of butyl rubber in hexane using a mixture of Et2AlCl and EtAlCl2 in the initiating system

机译:在引发体系中使用Et2AlCl和EtAlCl2的混合物在己烷中合成丁基橡胶

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A method was studied to obtain butyl rubber in hexane at -75 and -60degreesC using a mixture of a major amount of diethylaluminum chloride and a minor amount of ethylaluminum dichloride in the initiating system. The Jaacks method was used to determine the monomer reactivity ratio of isobutylene in copolymerization with isoprene in hexane at -75degreesC with the above initiating system; gamma(IB) = 1.54 +/- 0.06. This value was different from a literature value r(IB) 1.08 when just EtAlCl2 was used in hexane at -80degreesC. The mixture of both alkylaluminum chlorides in the initiating solution was subsequently directly activated with minute amounts of water or methylaluminoxane (MAO). The use of the modified initiators resulted in higher molecular weights, higher degrees of conversion, and higher isoprene contents in the butyl rubber. At the same time, temperature control was good during polymerizations. With modified alkylaluminum halides, the monomer reactivity ratio of isobutylene in copolymerization with isoprene in hexane at -75degreesC was close to unity, similar to the reported case with just EtAlCl2, The system activated with MAO made it possible to synthesize butyl rubber in hexane at -60degreesC having main characteristics typical of commercial butyl rubber manufactured in methyl chloride at -95degreesC. (C) 2003 Wiley Periodicals, Inc. J Appl Polym Sci 87: 2360 -2364, 2003. [References: 15]
机译:研究了在引发体系中使用大量二乙基氯化铝和少量二氯化乙基铝的混合物在-75和-60℃于己烷中获得丁基橡胶的方法。用Jaacks法测定在-75℃下用上述引发体系与异戊二烯在己烷中共聚时异丁烯的单体反应率。 γ(IB)= 1.54 +/- 0.06。当仅将EtAlCl2在-80℃的己烷中使用时,该值与文献值r(IB)1.08不同。随后用少量水或甲基铝氧烷(MAO)直接活化引发剂溶液中的两种烷基氯化铝的混合物。改性引发剂的使用导致丁基橡胶中更高的分子量,更高的转化度和更高的异戊二烯含量。同时,聚合过程中温度控制良好。用改性的烷基铝卤化物,异丁烯在-75℃下与异戊二烯在己烷中共聚的单体反应率接近于1,类似于报道的仅用EtAlCl2的情况。用MAO活化的系统使得在-下在己烷中合成丁基橡胶成为可能具有在-95℃下在氯甲烷中制造的商用丁基橡胶的典型主要特性的60℃。 (C)2003 Wiley Periodicals,Inc. J Appl Polym Sci 87:2360 -2364,2003。[参考:15]

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