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Characterizationof the Thermal and Photoinduced Reactionsof Photochromic Spiropyrans in Aqueous Solution

机译:表征反应和光诱导反应溶液中变色螺旋藻的合成

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摘要

Six water-soluble spiropyran derivatives have been characterized with respect to the thermal and photoinduced reactions over a broad pH-interval. A comprehensive kinetic model was formulated including the spiro- and the merocyanine isomers, the respective protonated forms, and the hydrolysis products. The experimental studies on the hydrolysis reaction mechanism were supplemented by calculations using quantum mechanical (QM) models employing density functional theory. The results show that (1) the substitution pattern dramatically influences the pKa-values of the protonated forms as well as the rates of the thermal isomerization reactions, (2) water is the nucleophile in the hydrolysis reaction around neutral pH, (3) the phenolate oxygen of the merocyanine form plays a key role in the hydrolysis reaction. Hence, the nonprotonated merocyanine isomer is susceptible to hydrolysis, whereas the corresponding protonated form is stable toward hydrolytic degradation.
机译:关于在宽的pH区间内的热反应和光诱导反应,已经表征了六种水溶性螺吡喃衍生物。制定了一个综合的动力学模型,其中包括螺和花菁异构体,各自的质子化形式和水解产物。通过使用密度泛函理论的量子力学(QM)模型进行计算,补充了对水解反应机理的实验研究。结果表明:(1)取代方式对质子化形式的pKa值以及热异构化反应的速率有显着影响;(2)水是中性pH左右水解反应中的亲核试剂,(3)花青素形式的苯酚氧在水解反应中起关键作用。因此,非质子化的花菁异构体易于水解,而相应的质子化形式对于水解降解是稳定的。

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