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ROK为助引发剂的丁二烯调聚动力学研究
引用本文:王玉荣,王强,刘洪阳,杨晓.ROK为助引发剂的丁二烯调聚动力学研究[J].大连理工大学学报,2006,46(1):12-15.
作者姓名:王玉荣  王强  刘洪阳  杨晓
作者单位:大连理工大学,化工学院,辽宁,大连,116012;大连理工大学,化工学院,辽宁,大连,116012;大连理工大学,化工学院,辽宁,大连,116012;大连理工大学,化工学院,辽宁,大连,116012
摘    要:对以正丁基锂(n-BuLi)为引发剂、混甲基苯酚钾(ROK)为助引发剂、二甲苯为溶剂兼做链转移剂、二乙二醇二甲醚(2G)为极性调节剂的丁二烯阴离子调聚动力学进行了研究.考查了n(K)/,z(Li)、n(2G)/n(Li)和温度对聚合速率的影响及不同条件对液体聚丁二烯相对分子质量(M)和相对分子质量分布(PD)的影响.寥验结果表明:反应速率与单体浓度呈一次方关系;当n(K)/n(Li)、n(2G)/n(Li)增大,温度升高时.聚台反应表观增长速率常数增大;随n(K)/n(Li)的增加,聚合物相对分子质量下降,且分布加宽.所得液体聚丁二烯可用做绿色涂料基料.

关 键 词:液体聚丁二烯  混甲基苯酚钾  动力学  聚合反应速率  相对分子质量分布
文章编号:1000-8608(2006)01-0012-04
收稿时间:2005-03-21
修稿时间:2005-03-212005-11-20

Research on polymerization kinetics of liquid polybutadiene using potassium mixed-methylphenoxide as promoter
WANG Yu-rong,WANG Qiang,LIU Hong-yang,YANG Xiao.Research on polymerization kinetics of liquid polybutadiene using potassium mixed-methylphenoxide as promoter[J].Journal of Dalian University of Technology,2006,46(1):12-15.
Authors:WANG Yu-rong  WANG Qiang  LIU Hong-yang  YANG Xiao
Institution:School of Chem. Eng., Dalian Univ. of Technoh , Dalian 116012, China
Abstract:Polymerization kinetics of the anionic telomerization of butadiene with n BuLi as the initiator,potassium mixed methylphenixied(ROK) as the promoter,xylene as the transfer agent as well as the solvent in the presence of diethylene glycol dimethyl ether(2G) as the polar modifier was studied.Effect of the promoter /initiator n(K)/n(Li)],the polar modifier/initiator n(2G)/n(Li)] and temperature on polymerization were investigated.Influence of different reaction conditions on molecular weight and its distribution was examined.It is determined that the polymerization rate is the first order in monomer concentration;raising n(K)/n(Li),n(2G)/n(Li) and temperature all resulted in the increasing of the false first order apparent rate constant of propagation.The liquid polybutadiene obtained can be used for the base of green dope.
Keywords:liquid polybutadiene  potassium mixed methylphenoxide  kinetics  polymerization rate  relative molecular mass distribution
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