首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Analysis of Association Constant for Ground-State Dye-Electron Acceptor Complex of Photoinitiator Systems and the Association Constant Effect on the Kinetics of Visible-Light-Induced Polymerizations
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Analysis of Association Constant for Ground-State Dye-Electron Acceptor Complex of Photoinitiator Systems and the Association Constant Effect on the Kinetics of Visible-Light-Induced Polymerizations

机译:光引发剂体系基态染料-电子受体配合物的缔合常数分析及缔合常数对可见光引发聚合反应动力学的影响

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We investigated the formation of ground-state donor/acceptor complexes between xanthene dyes [rose bengal (RB) and fluorescein (FL)] and a diphenyliodonium (DPI) salt, which is dissolved in 2-hydroxyethyl methacrylate (HEMA) monomer. To characterize the association constant of the complex, we have suggested a new analysis model based upon the Benesi-Hildebrand model. Because the assumption of the original Benesi-Hildebrand model is that the absorption bands are only due to the presence of the complex and that the absorption by the free component is negligible, the model cannot be applied to our systems, which is a dye-based initiator system. For each dye, the molar absorptivity of the ground-state complex was evaluated as a function of wavelength, and this analysis confirmed the validity of the modified Benesi-Hildebrand model. In addition, we observed that the RB/DPI photoinitiator system failed to produce a perceptible polymerization rate but the FL/DPI photoinitiator system provided high rates of polymerization. On the basis of the association constant for these complexes, we concluded that the observed kinetic differences arise from the different association constant values of the ground-state dyeacceptor complex, resulting in back-electron transfer reaction. (C) 2009 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 47: 1429-1439, 2009
机译:我们研究了x吨染料[玫瑰孟加拉(RB)和荧光素(FL)]与二苯基碘鎓(DPI)盐之间的基态供体/受体复合物的形成,该盐溶解在甲基丙烯酸2-羟乙酯(HEMA)单体中。为了表征复合物的缔合常数,我们提出了一种基于Benesi-Hildebrand模型的新分析模型。因为最初的Benesi-Hildebrand模型的假设是吸收带仅是由于存在复合物,并且游离组分的吸收可忽略不计,所以该模型无法应用于我们的基于染料的系统启动器系统。对于每种染料,将基态复合物的摩尔吸收率作为波长的函数进行评估,该分析证实了改良的Benesi-Hildebrand模型的有效性。另外,我们观察到RB / DPI光引发剂体系未能产生可察觉的聚合速率,但是FL / DPI光引发剂体系提供了高聚合速率。基于这些配合物的缔合常数,我们得出结论,观察到的动力学差异是由基态染料受体配合物的不同缔合常数值引起的,从而导致背电子转移反应。 (C)2009 Wiley Periodicals,Inc. J Polym Sci Part A:Polym Chem 47:1429-1439,2009

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