Xu Yanting, Biczysko Malgorzata
International Centre for Quantum and Molecular Structures, Department of Physics, College of Sciences, Shanghai University, Shanghai, China.
Front Chem. 2024 Sep 3;12:1439194. doi: 10.3389/fchem.2024.1439194. eCollection 2024.
The James Webb Space Telescope (JWST) opened a new era for the identification of molecular systems in the interstellar medium (ISM) by vibrational features. One group of molecules of increasing interest is cyano-derivatives of aromatic organic molecules, which have already been identified in the ISM on the basis of the analysis of rotational signatures, and so, are plausible candidates for the detection by the JWST. Benzonitrile considered in this work represents a suitable example for the validation of a computational strategy, which can be further applied for different, larger, and not-yet observed molecules. For this purpose, anharmonic simulations of infrared (IR) spectra have been compared with recent FTIR experimental studies. The anharmonic computations using the generalized second-order vibrational perturbation theory (GVPT2) in conjunction with a hybrid force field combining the harmonic part of revDSD-PBEP86-D3/jun-cc-pVTZ with anharmonic corrections from B3LYP-D3/SNSD show very good agreement with those in the experiment, with a mean error of for all fundamental transitions overall and only for the stretching fundamental at 4.49 . The inclusion of overtones up to three-quanta transitions also allowed the prediction of spectra in the near-infrared region, which shows distinct features due to overtones at the 2.26 and 1.52 . The remarkable accuracy of the GVPT2 results opens a pathway for the reliable prediction of spectra for a broader range of cyano-astroCOMs.
詹姆斯·韦布空间望远镜(JWST)通过振动特征开启了星际介质(ISM)中分子系统识别的新纪元。一类越来越受关注的分子是芳香有机分子的氰基衍生物,它们已基于转动特征分析在星际介质中被识别出来,因此是JWST探测的合理候选物。本文所考虑的苯甲腈是验证一种计算策略的合适例子,该策略可进一步应用于不同的、更大的且尚未观测到的分子。为此,已将红外(IR)光谱的非谐模拟与近期的傅里叶变换红外(FTIR)实验研究进行了比较。使用广义二阶振动微扰理论(GVPT2)结合一种混合力场进行的非谐计算,该混合力场将revDSD - PBEP86 - D3/jun - cc - pVTZ的谐性部分与来自B3LYP - D3/SNSD的非谐校正相结合,与实验结果显示出非常好的一致性,所有基本跃迁的总体平均误差为 ,对于4.49 处的 伸缩基本跃迁仅为 。包含直至三量子跃迁的泛音也使得能够预测近红外区域的光谱,该区域由于2.26 和1.52 处的 泛音而呈现出明显特征。GVPT2结果的显著准确性为更广泛的氰基 - 天体有机分子光谱的可靠预测开辟了一条途径。