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Excited-state intramolecular proton transfer and photoswitching in hydroxyphenyl-imidazopyridine derivatives: A theoretical study

机译:羟基苯基咪唑并吡啶衍生物的激发态分子内质子转移和光开关:理论研究

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The MP2/CC2 and CASSCF theoretical approaches have been employed to determine the excited state proton transfer and photophysical nature of the four organic compounds, having the main frame of hydroxyphenyl-imidzaopyridine (HPIP). The nitrogen insertion effect, in addition to amine (-NH2) substitution has been investigated extensively by following the transition energies and deactivation pathways of resulted HPIP derivatives. It has been predicted that the excited state intramolecular proton transfer with or without small barrier is the most important feature of these compounds. Also, for all of the considered HPIP derivatives, a conical intersection (CI) between ground and the S-1 excited state has been predicted. The strong non-adiabatic coupling in the CI (S-1/S-0), drives the system back to the ground state in which the proton may either return to the phenoxy unit and thus close the photocycle, or the system can continue the twisting motion that results in formation of a gamma-photochromic species. This latter species can be responsible for photochromism of HPIP derivative systems. Published by AIP Publishing.
机译:已使用MP2 / CC2和CASSCF理论方法确定具有羟基苯基-咪唑并吡啶(HPIP)主框架的四种有机化合物的激发态质子转移和光物理性质。通过跟踪所得HPIP衍生物的跃迁能和失活途径,广泛研究了除胺(-NH2)取代以外的氮插入效应。已经预料到,具有或没有小的势垒的激发态分子内质子转移是这些化合物的最重要特征。同样,对于所有考虑的HPIP衍生物,已经预测了基态和S-1激发态之间的圆锥形交点(CI)。 CI(S-1 / S-0)中的强非绝热耦合将系统驱回到基态,在该基态下质子可能返回苯氧基单元,从而关闭光循环,或者系统可以继续扭曲运动导致形成伽玛光致变色物质。后者可能是HPIP衍生物系统的光致变色的原因。由AIP Publishing发布。

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