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Sonolytic and Silent Polymerization of Methacrlyic Acid Butyl Ester Catalyzed by a New Onium Salt with bis-Active Sites in a Biphasic System — A Comparative Investigation

机译:双相体系中具有双活性位的新鎓盐催化甲基丙烯酸丁酯的声分解和静默聚合—对比研究

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摘要

Currently, ingenious new analytical and process experimental techniques which are environmentally benign techniques, viz., ultrasound irradiation, have become immensely popular in promoting various reactions. In this work, a novel soluble multi-site phase transfer catalyst (PTC) viz., 1,4-bis-(propylmethyleneammounium chloride)benzene (BPMACB) was synthesized and its catalytic efficiency was assessed by observing the kinetics of sonolytic polymerization of methacrylic acid butyl ester (MABE) using potassium persulphate (PPS) as an initiator. The ultrasound–multi-site phase transfer catalysis (US-MPTC)-assisted polymerization reaction was compared with the silent (non-ultrasonic) polymerization reaction. The effects of the catalyst and various reaction parameters on the catalytic performance were in detail investigated by following the kinetics of polymerization of MABE in an ethyl acetate-water biphasic system. From the detailed kinetic investigation we propose a plausible mechanism. Further the kinetic results demonstrate clearly that ultrasound-assisted phase-transfer catalysis significantly increased the reaction rate when compared to silent reactions. Notably, this environmentally benign and cost-effective process has great potential to be applied in various polymer industries.
机译:当前,对环境有益的技术,即超声波辐照,巧妙的新的分析和过程实验技术在促进各种反应中已变得非常流行。在这项工作中,合成了一种新型的可溶性多位相转移催化剂(PTC),即1,4-双-(丙基亚甲基氯化铵)苯(BPMACB),并通过观察甲基丙烯酸的声波聚合动力学来评估其催化效率。过硫酸钾(PPS)作为引发剂的丙烯酸丁酯(MABE)。将超声-多位相转移催化(US-MPTC)辅助的聚合反应与无声(非超声波)聚合反应进行了比较。通过遵循乙酸乙酯-水双相体系中MABE的聚合动力学,详细研究了催化剂和各种反应参数对催化性能的影响。通过详细的动力学研究,我们提出了一个合理的机制。进一步的动力学结果清楚地表明,与沉默反应相比,超声辅助的相转移催化显着提高了反应速率。值得注意的是,这种对环境无害且具有成本效益的方法在各种聚合物工业中具有巨大的潜力。

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