RAFT Polymerization of Styrene with Potassium Ethylxanthate as the Chain Transfer Agent

Xinmeng Xu, Xiang Xu, Yanning Zeng, Faai Zhang
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Abstract

Using potassium ethylxanthate as the chain transfer agent, 2,2’-azobis(isobutyronitrile) (AIBN) as the initiator, reversible addition-fragmentation chain transfer (RAFT) polymerization of styrene was carried out. The influences of reaction temperature, reaction time, and the amounts of the initiator and chain transfer agent on the RAFT polymerization were investigated in terms of monomer conversion, average number molecular weight (Mn) and molecular weight distribution (Ð) of the obtained polymer. Monomer conversion and the Mn of the obtained polystyrene (PS) improved with an increase in the reaction temperature, and the polymerization kinetics exhibited a highly linear relationship, indicating a first-order reaction. When the amounts of the initiator and chain transfer agent were increased, it led to a decreased Mn of the produced PS. Meanwhile, the Ð of the PS was in a relatively narrow range (1.42-1.89). The chain-end functionality was further demonstrated by adding methyl methacrylate to the PS.
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乙基黄药钾作链转移剂的苯乙烯RAFT聚合
以乙基黄药钾为链转移剂,2,2′-偶氮(异丁腈)(AIBN)为引发剂,进行了苯乙烯的可逆加成-破碎链转移(RAFT)聚合。考察了反应温度、反应时间、引发剂和链转移剂用量对RAFT聚合反应的单体转化率、所得聚合物的平均数分子量(Mn)和分子量分布(Ð)的影响。随着反应温度的升高,所得聚苯乙烯(PS)的单体转化率和Mn均有所提高,聚合动力学呈高度线性关系,为一级反应。随着引发剂和链转移剂用量的增加,所得PS的Mn降低,同时PS的Ð在一个较窄的范围内(1.42 ~ 1.89)。通过在PS中加入甲基丙烯酸甲酯进一步证明了其链端功能性。
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