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Ground and Excited State Intramolecular Proton Transfer in Salicylic Acid: an Ab Initio Electronic Structure Investigation

机译:水杨酸的基态和激发态分子内质子转移:从头算电子结构研究

摘要

Energetics of the ground and excited state intramolecular proton transfer in salicylic acid have been studied by ab initio molecular orbital calculations using the 6-31G** basis set at the restricted Hartree-Fock (RHF) and configuration interaction-single excitation (CIS) levels and also using the semiempirical method AM1 at the RHF level as well as with single and pair doubles excitation configuration interaction spanning eight frontier orbitals (PECI = 8). The ab initio potential energy profile for intramolecular proton transfer in the ground state reveals a single minimum corresponding to the primary form, in the first excited singlet state, however, there are two minima corresponding to the primary and tautomeric forms, separated by a barrier of similar to 6 kcal/mol, thus accounting for dual emission in salicylic acid. Electron density changes with electronic excitation and tautomerism indicate no zwitterion formation. Changes in spectral characteristics with change in pH, due to protonation and deprotonation of salicylic acid, are also accounted for, qualitatively. Although the AM1 calculations suggest a substantial barrier for proton transfer in the ground as well as the first excited state of SA, it predicts the transition wavelength in near quantitative accord with the experimental results for salicylic acid and its protonated and deprotonated forms.
机译:水杨酸中基态和激发态分子内质子转移的能量已经通过使用从头开始的分子轨道计算进行了研究,使用6-31G **基在受限的Hartree-Fock(RHF)和构型相互作用-单激发(CIS)水平下进行了计算并在RHF级别上使用半经验方法AM1以及跨越八个前沿轨道(PECI = 8)的单和双激发结构相互作用。在基态下分子内质子转移的从头算势能图揭示了与初级形式相对应的单个最小值,在第一激发单重态下,存在两个与初级和互变异构形式相对应的最小值,由一个势垒隔开类似于6 kcal / mol,因此解释了水杨酸的双重排放。电子密度随电子激发和互变异构的变化表明没有两性离子形成。定性地解释了由于水杨酸的质子化和去质子化而导致的光谱特性随pH的变化。尽管AM1的计算表明质子在地面以及SA的第一个激发态中都存在很大的障碍,但它预测了跃迁波长与水杨酸及其质子化和去质子化形式的实验结果接近定量。

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