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首页> 外文期刊>Journal of Materials Science >Mechanistic study on polymerization of acrylamide induced by methyl ethyl ketone and its derivatives based on the interaction between carbonyl and amide groups
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Mechanistic study on polymerization of acrylamide induced by methyl ethyl ketone and its derivatives based on the interaction between carbonyl and amide groups

机译:基于羰基与酰胺基相互作用的甲乙酮及其衍生物诱导丙烯酰胺聚合的机理研究

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Polymerizations of acrylamide (AAm) were carried out in the presence of methyl ethyl ketone (MEK), methyl isopropyl ketone (MIK) and t-butyl methyl ketone (tBMK) in tetrahydrofuran at 30 deg C. It was found that the rate of polymerization (R sub p ) increased according to this order: MEKMIK>tBMK. The maximum value of R sub p for AAm reached the point of equimolar ratio of AAm to ketone in any of the three systems. The polymerization was confirmed to proceed through radical mechanism. Effects of temperature on the R sub p were discussed in a temperature range of 30-60 deg C. The overall activation energy (E sub a ) was estimated to be 52.6, 35.7, and 22.7 KJ/mol for MEK, MIK, and tBMK, respectively. No acceleration of the polymerization of N,N-dimethylacrylamide system was observed even in the presence of these ketones. The participation of -NH sub 2 in the complexation of monomer with the ketones is proposed in the initiation of this radical polymerization.
机译:在甲基乙基酮(MEK),甲基异丙基酮(MIK)和叔丁基甲基酮(tBMK)的存在下于四氢呋喃中于30℃进行丙烯酰胺(AAm)的聚合。发现聚合速率(R sub p)按照以下顺序增加:对于Aam,MEK MIK> tBMK。在三个系统中的任何一个中,AAm的R sub p的最大值都达到了AAm与酮的等摩尔比。证实聚合反应是通过自由基机理进行的。在30-60摄氏度的温度范围内讨论了温度对R sub p的影响。对于MEK,MIK和tBMK,总活化能(E sub a)估计为52.6、35.7和22.7 KJ / mol。 , 分别。即使存在这些酮,也未观察到N,N-二甲基丙烯酰胺体系的聚合反应加速。在该自由基聚合反应的引发中,提出了-NH sub 2参与单体与酮的络合。

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