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Polymerization Kinetics of Methacrylic Groups in Organic-Inorganic Hybrid Polymeric Thin Films

机译:有机 - 无机杂交聚合物薄膜中甲基丙烯酸基团的聚合动力学

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In this paper,the polymerization kinetics of unsaturated double bonds(C=C)in TiO2-and 2r02-doped hybrid polymeric thin films during UV irradiation and thermal curing is studied by monitoring the variation of C=C absorption band at 1630 cm~(-1)using FT-IR spectroscopic technique.Experimental results showed that polymerization of the unsaturated C=C groups in the TiO2-and ZrO2-doped hybrid polymers can be realized by either photo-irradiation or thermal treatment.The UV-induced polymerization process is much faster than thermal curing,but a full conversion of C=C groups into polyacrylate chains cannot be achieved without thermal treatment.The catalytic effect of TiO2 and ZrO2 on promoting the polymerization of C=C groups was observed,and the time of UV exposure and thermal curing for cross-Unking C=C bonds was found to decrease with the increase of the concentration of TiO2 and ZrO2.The activation energy of the hybrid material containing varied concentration of TiO2 and ZrO2 was calculated,and the results indicated that TiO2 is more active than ZrO2 in promoting the polymerization of the unsaturated C=C bonds.Finally,the mechanisms for TiO2 and ZrO2 enhancing the material's photosensitivity(i.e.promoting polymerization of C=C bonds)have been proposed and discussed.
机译:在本文中,通过监测1630cm的C = C吸收带的变化,研究了在UV照射和热固化过程中的不饱和双键(C = C)的聚合动力学(C = C)在UV照射和热固化过程中研究了C = C吸收带的变化〜( -1)使用FT-IR光谱技术。实验结果表明,通过光照射或热处理可以实现TiO 2和ZrO2掺杂的杂化聚合物中的不饱和C = C组的聚合。UV诱导的聚合方法比热固化快得多,但在没有热处理的情况下,不能达到C = C组的完全转化为聚丙烯酸酯链。观察到TiO 2和ZrO2在促进C = C组的聚合的催化作用,以及UV的时间发现对交叉不承诺C = C键的暴露和热固化随着TiO 2和ZrO2浓度的增加而降低。含有变化的TiO 2和ZrO2浓度的杂化材料的活化能量是计算的D,结果表明,在促进不饱和C = C键的聚合方面,TiO 2比ZrO2更活跃。最后,已经提出了TiO 2和ZrO2的机制,提出了提高了材料的光敏性(IEPROMPOT聚合C = C键的聚合)并讨论过。

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