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Investigation of ESIPT in a panel of chromophores presenting N-H··· N intramolecular hydrogen bonds

机译:呈现N-H···N分子内氢键的生色团中ESIPT的研究

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Thermodynamic and kinetic aspects of excited state intramolecular proton transfer (ESIPT) are investigated in 11 chromophores harboring an intramolecular N-H···N hydrogen bond [pyridyl pyrazole, pyridyl pyrrole, azaindole, pyridyl indole, pyrroloquinoline, and an analogue of the Blue Fluorescent Protein (BFP) chromophore] with the help of quantum mechanical calculations. For pyridyl pyrazoles, simulated spectra are used to help the interpretation of experimental ones and the effects of several substituents are investigated. Then it is shown that Time-Dependent Density Functional Theory fails to satisfactorily describe the energetic aspects of ESIPT for the BFP chromophore analogue. Equation-of-Motion Coupled Cluster theory is thus used to reach accurate insights for this challenging case.
机译:在具有分子内NH··N氢键[吡啶基吡唑,吡啶基吡咯,氮杂吲哚,吡啶基吲哚,吡咯并喹啉和蓝色荧光蛋白类似物的11个生色团中,研究了激发态分子内质子转移(ESIPT)的热力学和动力学方面。 (BFP)发色团]借助量子力学计算。对于吡啶基吡唑,使用模拟光谱来帮助解释实验光谱,并研究了几个取代基的作用。然后表明,时变密度泛函理论不能令人满意地描述BFP生色团类似物的ESIPT的能量方面。因此,使用了运动方程耦合簇理论来针对这种具有挑战性的情况得出准确的见解。

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