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Semibatch RAFT Polymerization for Branched Polyacrylamide Production: Effect of Divinyl Monomer Feeding Policies

机译:半间歇式RAFT聚合用于支链聚丙烯酰胺生产:二乙烯基单体进料策略的影响

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摘要

Star and hyperbranched polyacrylamides (s-PAMs and b-PAMs) were synthesized via semibatch RAFT copolymerization of acrylamide (AM) and N,N'-methylenebisacrylamide (BisAM) using four monomer feeding policies. The BisAM to chain transfer agent (CTA) ratios from 1 to 40 at a constant [AM]0/[CTA]0 of 600 were investigated at 60°C. The s-PAMs with the number of arms of 1.4-12.8 and 1.8-8.4 were, respectively, produced by arm-first (AF) and core-first (CF) approaches, whereas the b-PAMs having the branching density of 1.34-13.1C/1000Cs were synthesized by constant BisAM feeding (semibatch polymerization, SB) and batch (batch polymerization, BA). Soluble b-PAMs were produced with the four feeding policies at [BisAM]0I[CTA]0 of 5. However, when the [BisAM]0/[CTA]0 was increased to 30, the gelation occurred with the CF and BA approaches while the AF and SB synthesized soluble branched PAMs. The AF and SB approaches appeared to be practical in producing the respective s-PAM and b-PAM at high [BisAM]0/[CTA]0 ratios or low CTA usages.
机译:使用四种单体进料策略,通过丙烯酰胺(AM)和N,N'-亚甲基双丙烯酰胺(BisAM)的半间歇RAFT共聚合成星形和超支化聚丙烯酰胺(s-PAM和b-PAM)。在60℃下以恒定的[AM] 0 / [CTA] 0为600,研究BisAM与链转移剂(CTA)之比为1至40。臂数为1.4-12.8和1.8-8.4的s-PAM分别通过臂优先(AF)和核心优先(CF)方法生产,而b-PAM的分支密度为1.34-通过恒定的BisAM进料(半间歇聚合,SB)和间歇(间歇聚合,BA)合成了13.1C / 1000Cs。在[BisAM] 0I [CTA] 0为5时采用四种补料策略生成了可溶性b-PAM。但是,当[BisAM] 0 / [CTA] 0增加至30时,CF和BA方法会发生凝胶化AF和SB合成可溶性支链PAM。 AF和SB方法似乎在以高[BisAM] 0 / [CTA] 0比率或低CTA使用率生产相应的s-PAM和b-PAM方面是实用的。

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