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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Mechanistic Investigation of a Dual Bicyclic Photoinitiating System for Synthesis of Organic-Inorganic Hybrid Materials
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Mechanistic Investigation of a Dual Bicyclic Photoinitiating System for Synthesis of Organic-Inorganic Hybrid Materials

机译:合成有机无机杂交材料双双环光引发系统的机械研究

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摘要

One-pot synthesis of organic inorganic hybrid materials under light requires specific photoinitiating systems which are able to release several different initiating species after light absorption. In this paper, the reaction mechanism of a photocyclic three-component initiating system based on isopropylthioxanthone as photoinitiator and an iodonium salt and a thiol as co-initiators was studied. It is shown that this system enables simultaneous release of both radicals and protons which are able to initiate a free radical photopolymerization and the hydrolysis condensation of a sol-gel network, respectively. Time-resolved investigations by laser flash photolysis show that the initiating species are produced within two concomitant cyclic reaction mechanisms depending on the relative quantities of the co-initiators. Protons resulting from the secondary dark reaction of the photocyclic systems are detected at the microsecond scale by means of a proton-sensitive molecular probe, and corresponding quantum yields are measured. Finally, synthesis of organic, inorganic, and hybrid materials under LED light at 395 nm is evaluated with respect to the mechanistic considerations demonstrating the dual initiating character of the system.
机译:在光下的有机无机杂化材料的单壶合成需要特定的光引发系统,其能够在光吸收后释放几种不同的启动物种。本文研究了基于异丙基硫代吡喃藻酮作为光引发剂和碘鎓盐和硫醇作为共引发剂的光循环三组分引发系统的反应机理。结果表明,该系统能够同时释放可分别启动自由基光聚合和溶胶 - 凝胶网络的自由基光聚合和水解缩合的自由基和质子。激光闪光光解的时间分辨调查表明,根据共引发剂的相对量,在两个伴随的环状反应机制中产生起始物质。通过质子敏感的分子探针在微秒刻度检测由光环系统的二次暗反应产生的质子,测量相应的量子产率。最后,在395nm下的LED光下合成有机,无机和混合材料在395nm下进行了指示系统的双发性特征的机械考虑。

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