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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Termination mechanism during the photo-induced radical cross-linking polymerization in the presence and absence of oxygen
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Termination mechanism during the photo-induced radical cross-linking polymerization in the presence and absence of oxygen

机译:有氧和无氧条件下光诱导自由基交联聚合反应的终止机理

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摘要

The objective of this study was to characterize changes in the termination mechanism and in the rate coefficients during a light-induced polymerization occurring under continuous illumination and during the after-effect (after the irradiation has been discontinued) in the presence or in the absence of oxygen. The illumination was stopped at various double bond conversions. The polymerization of a model monomer-(diethylene glycol) dimethacrylate was analyzed using three termination models: monomolecular (I), bimolecular (II) and mixed (III) and the following parameters were estimated: k(t)(m) and k(p)[P-.](0) (Model I), k(t)(b) [P-.](0) and k(p)[P-.](0) (Model II) and k(t)(m), k(t)(b) [P.](0) and k(p)[P-.](0) (Model III), where k(t)(m) is the monomolecular termination rate coefficient, k(t)(b) is the bimolecular termination rate coefficient, kp is propagation rate coefficient and [P-.](0) denotes macroradical concentration at the beginning of the dark reaction. The parameters of the models were averaged over increasingly large dark conversion. Multistage statistical analysis of the results showed that over the conversion range studied, the bimolecular reaction was the main way of termination during continuous illumination, but during the after-effect termination mechanism changed with time of dark reaction from the bimolecular to the mixed one indicating an increasing importance of radical trapping. The obtained results suggest that oxygen accelerates the bimolecular termination, but pseudo first-order reaction with oxygen also contributes to the overall termination process. Moreover, the postpolymerization is more sensitive to negative influence of oxygen than the polymerization under continuous irradiation. [References: 37]
机译:这项研究的目的是表征在存在或不存在以下条件下,在连续照射下发生光诱导聚合过程中以及在后效应期间(停止照射后)终止机理和速率系数的变化。氧。在各种双键转换下停止照明。使用三种终止模型分析了单体-(二乙二醇)二甲基丙烯酸酯模型的聚合反应:单分子(I),双分子(II)和混合(III),并估算了以下参数:k(t)(m)和k( p)[P-。](0)(模型I),k(t)(b)[P-。](0)和k(p)[P-。](0)(模型II)和k( t)(m),k(t)(b)[P。](0)和k(p)[P-。](0)(模型III),其中k(t)(m)是单分子末端速率系数,k(t)(b)是双分子终止速率系数,kp是传播速率系数,[P-。](0)表示在暗反应开始时的宏观自由基浓度。在越来越大的暗转换中对模型的参数进行平均。结果的多阶段统计分析表明,在所研究的转化范围内,双分子反应是连续照明过程中终止反应的主要途径,但在后效应终止机理中,随着黑暗反应时间的延长,从双分子反应到混合反应的终止机理均发生了改变。诱捕的重要性越来越高。获得的结果表明,氧气加速了双分子的终止,但与氧气的拟一级反应也有助于整个终止过程。此外,后聚合比连续照射下的聚合对氧的负面影响更敏感。 [参考:37]

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