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HCOOH 的变分计算红外和拉曼振动光谱。

Vibrational infrared and Raman spectra of HCOOH from variational computations.

机构信息

ELTE, Eötvös Loránd University, Institute of Chemistry, Pázmány Péter sétány 1/A, 1117 Budapest, Hungary.

Departamento de Química Física, University of Salamanca, 37008 Salamanca, Spain.

出版信息

Phys Chem Chem Phys. 2023 Jun 7;25(22):15183-15192. doi: 10.1039/d3cp00541k.

Abstract

All vibrational energies of the formic acid molecule in different forms (-, -, -) were converged up to 4500 cm beyond the zero-point vibrational energy with the GENIUSH-Smolyak variational approach and using an potential energy surface [D. P. Tew and W. Mizukami, , , 9815-9828 (2016)]. The full-dimensional dipole and polarizability surfaces were fitted to points computed at the CCSD/aug-cc-pVTZ level of theory. Then, body-fixed vibrational dipole and polarizability transition moments were evaluated and used to simulate jet-cooled infrared and Raman spectra of HCOOH. The benchmark-quality vibrational energy, transition moment, and wave function data will be used in further work for comparison with vibrational experiments, and in further rovibrational computations.

摘要

采用 GENIUSH-Smolyak 变分方法和 势能面,将甲酸分子的所有振动能形式(-,-,-)收敛到零点振动能以外的 4500cm[D. P. Tew 和 W. Mizukami,,, 9815-9828 (2016)]。全维偶极矩和极化率表面拟合到在 CCSD/aug-cc-pVTZ 理论水平计算的点。然后,评估了固定在物体上的振动偶极矩和极化率跃迁矩,并用于模拟 HCOOH 的射流冷却红外和拉曼光谱。基准质量的振动能、跃迁矩和波函数数据将用于与振动实验的进一步比较,并用于进一步的 rovibrational 计算。

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