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TDDFT calculations of electronic spectra of benzoxazoles undergoing excited state proton transfer

机译:进行激发态质子转移的苯并恶唑电子光谱的TDDFT计算

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摘要

Energies and oscillator strengths of vertical transitions for various rotameric and tautomeric species of 2-(2′-hydroxyphenyl)benzoxazole (HBO), 2,5-bis(2-benzoxazolyl)phenol (DBP) and 2,5-bis(2-benzoxazolyl)hydroquinone (BBHQ) have been calculated in the ground and first excited states with the use of TDDFT methods. The TDDFT results demonstrate good correspondence to the frequencies of absorption and fluorescence bands of the benzoxazoles reported for measurements in supersonic jets and solution, but fail to predict relative energies of the enol and keto tautomers of DBP and BBHQ in the excited state. Low intensity of the fluorescence bands attributed to the conformations of HBO and DBP that do not undergo excited state proton transfer is shown to be caused by low concentrations of the conformations in the ground state. For the three compounds large-amplitude twisting of the keto tautomer is found to be one of radiationless processes resulting in decrease of the fluorescence with a large Stokes shift.
机译:2-(2'-羟苯基)苯并恶唑(HBO),2,5-双(2-苯并恶唑基)苯酚(DBP)和2,5-双(2-)的各种互变异构体和互变异构体的垂直跃迁的能量和振荡强度苯并恶唑基)氢醌(BBHQ)已使用TDDFT方法在基态和首次激发态下进行了计算。 TDDFT结果证明与报道的在超声速射流和溶液中测量的苯并恶唑的吸收频率和荧光带具有良好的对应关系,但未能预测DBP和BBHQ在激发态下的烯醇和酮互变异构体的相对能量。归因于未经历激发态质子转移的HBO和DBP的构象的荧光带的低强度显示是由基态中的构象的低浓度引起的。对于这三种化合物,发现酮互变异构体的大幅度扭曲是无辐射过程之一,导致荧光降低,斯托克斯位移大。

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