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Photochemistry and fluorescence spectroscopy of polymeric materials containing triphenylsulfonium salts

机译:含三苯基锍盐的聚合物材料的光化学和荧光光谱

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Triphenylsulfonium salts (TPS) have been formulated with polymers to make photosensitive systems for optical and optoelectronic applications. Photolysis of these salts generates strong acid which has been used in cross-linking reactions, deprotection reactions, and depolymerization reactions for photosensitive polymers, photodeformable polymers, and photo-doped conducting polymers. In addition, materials best described as polymeric sulfonium salts have been found to become conducting after photolysis. We have studied the photochemistry of TPS in polymer films and in solution. TPS photodecomposes by a mechanism that gives both in-cage recombination reactions and cage-escape products, and by reaction with solvent or polymer matrix. These products give cage/escape (C/E) ratios which are sensitive to the viscosity, rigidity, and polarity of the environment, and also the excited state from which the photochemistry occurs. Details of the reactivity and C/E ratios from photolysis of TPS salts in solution, have made it possible to determine their reactivity in polymers. In some cases the polymer behaves as a viscous solvent leading to high C/E ratios and in other systems the polymer excited state can sensitize the decomposition of TPS salts to give lower C/E ratios. Fluorescence studies on these polymers and quenching studies with TPS salts have helped to determine which excited states of the polymer and TPS salts are involved, and whether there is static or dynamic quenching in these systems. The photochemistry of model compounds for the polymeric sulfonium salts is also described.
机译:三苯基锍盐(TPS)已配制成具有聚合物,以制造光电和光电应用的光敏系统。这些盐的光解产生强酸,该酸已用于交联反应,脱保护反应和用于光敏聚合物,可光可变聚合物和光掺杂导电聚合物的解聚反应。另外,已发现最佳描述为聚合物锍盐的材料在光解后变成导电。我们研究了聚合物膜和溶液中TPS的光化学。 TPS通过赋予笼内重组反应和笼逸出产品的机制光分解,并通过与溶剂或聚合物基质反应。这些产品给出了对环境的粘度,刚性和极性敏感的笼/逃逸(C / E)比率,以及光化学发生的激发状态。反应性和C / E比从溶液中的TPS盐的光解的细节使得可以确定它们在聚合物中的反应性。在一些情况下,聚合物的表现为导致高C / E比的粘性溶剂,在其他系统中,聚合物激发状态可以敏感TPS盐的分解,得到降低的C / E比率。对这些聚合物和TPS盐的淬火研究的荧光研究有助于确定涉及聚合物和TPS盐的哪种激发态,以及这些系统中是否存在静态或动态猝灭。还描述了用于聚合锍盐的模型化合物的光化学。

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