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Ab initio potential-energy functions for excited state intramolecular proton transfer: a comparative study of o-hydroxybenzaldehyde, salicylic acid and 7-hydroxy-1-indanone

机译:激发态分子内质子转移的从头算势能函数:邻羟基苯甲醛,水杨酸和7-羟基-1-茚满酮的比较研究

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Potential-energy profiles along the minimum-energy reaction path for intramolecular proton transfer in the ~1#pi##pi#~* excited state have been calculated for the title compounds. The CASSCF and CIS electronic-structure methods have been employed for excited-state geometry optimization. Single-point energy calculations along the reaction path have been performed using the CASPT2 and TDDFT methods. The TDDFT method has been tested against accurate CASSCF and CASPT2 data for malonaldehyde. CASPT2 yields transition energies for photon absorption and emission which are in excellent agreement with experimental data (within 0.2 eV). The CASPT2 potential energy functions exhibit, however, artifactual kinks (on a scale of a single kcal mol~(-1)) which reflect inherent limitations of the CASSCF-based perturbation approach. TDDFT yields potential-energies functions which are essentially parallel to the CASPT2 functions and free of artifacts. Transition energies for absorption and emission are systematically overestimated, however, by about 0.5 eV in TDDFT. For all three title compounds, a barrierless ~1#pi##pi#~* potential-energy function is predicted. The location of the ~1#pi##pi#~* minimum varies from near-enol in salicylic acid to near-keto in 7-hydroxy-1-indanone.
机译:对于标题化合物,已计算出在〜1#pi ## pi#〜*激发态下分子内质子转移沿最小能量反应路径的势能分布。 CASSCF和CIS电子结构方法已用于激发态几何优化。沿反应路径的单点能量计算已使用CASPT2和TDDFT方法进行。 TDDFT方法已经针对丙二醛的准确CASSCF和CASPT2数据进行了测试。 CASPT2产生用于光子吸收和发射的跃迁能,该跃迁能与实验数据(在0.2 eV内)非常一致。但是,CASPT2势能函数表现出人为的纽结(在单个大卡摩尔〜(-1)的范围内),反映了基于CASSCF的摄动方法的固有局限性。 TDDFT产生的势能函数基本上与CASPT2函数平行,并且没有伪影。系统地高估了吸收和发射的跃迁能,但是在TDDFT中大约高了0.5 eV。对于所有三个标题化合物,预测到无障碍〜1#pi ## pi#〜*势能函数。 〜1#pi ## pi#〜*最小值的位置从水杨酸中的近烯醇到7-羟基-1-茚满酮中的近酮变化。

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