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针对中红外到近红外区域的 IR 和 VCD 光谱的稳健可靠分配和解释,实现完全无监督非谐计算的补充实验:以 2,3-丁二醇和-1,2-环己二醇为例。

Toward Fully Unsupervised Anharmonic Computations Complementing Experiment for Robust and Reliable Assignment and Interpretation of IR and VCD Spectra from Mid-IR to NIR: The Case of 2,3-Butanediol and -1,2-Cyclohexanediol.

机构信息

Scuola Normale Superiore , Piazza dei Cavalieri 7 , I-56126 Pisa , Italy.

Dipartimento di Medicina Molecolare e Traslazionale , Università di Brescia , Viale Europa 11 , 25123 Brescia , Italy.

出版信息

J Phys Chem A. 2020 Feb 6;124(5):1011-1024. doi: 10.1021/acs.jpca.9b11025. Epub 2020 Jan 27.

Abstract

The infrared (IR) and vibrational circular dichroism (VCD) spectra of 2,3-butanediol and -1,2-cyclohexanediol from 900 to 7500 cm (including mid-IR, fundamental CH and OH stretchings, and near-infrared regions) have been investigated by a combined experimental and computational strategy. The computational approach is rooted in density functional theory (DFT) computations of harmonic and leading anharmonic mechanical, electrical, and magnetic contributions, followed by a generalized second-order perturbative (GVPT2) evaluation of frequencies and intensities for all the above regions without introducing any ad hoc scaling factor. After proper characterization of large-amplitude motions, all resonances plaguing frequencies and intensities are taken into proper account. Comparison of experimental and simulated spectra allows unbiased assignment and interpretation of the most interesting features. The reliability of the GVPT2 approach for OH stretching fundamentals and overtones is confirmed by the remarkable agreement with a local mode model purposely tailored for the latter two regions. Together with the specific interest of the studied molecules, our results confirm that an unbiased assignment and interpretation of vibrational spectra for flexible medium-size molecules can be achieved by means of a nearly unsupervised reliable, robust, and user-friendly DFT/GVPT2 model.

摘要

通过实验和计算相结合的策略,研究了 2,3-丁二醇和-1,2-环己二醇的红外(IR)和振动圆二色性(VCD)光谱,范围从 9000 到 7500cm(包括中红外、基本 CH 和 OH 伸缩振动以及近红外区域)。计算方法基于密度泛函理论(DFT)计算谐和及主要非谐力学、电学和磁学贡献,然后通过广义二阶微扰(GVPT2)评估所有上述区域的频率和强度,而无需引入任何特定的比例因子。在对大振幅运动进行适当表征后,所有困扰频率和强度的共振都被适当考虑。实验和模拟光谱的比较允许对最有趣的特征进行无偏分配和解释。GVPT2 方法对 OH 伸缩基频和泛频的可靠性通过与专门为后两个区域设计的局部模式模型的显著一致性得到了确认。结合所研究分子的特殊兴趣,我们的结果证实,对于灵活的中等大小分子的振动光谱,可以通过近乎无需监督的可靠、稳健和用户友好的 DFT/GVPT2 模型来实现无偏分配和解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd6c/7993639/8e0b43502fd7/jp9b11025_0001.jpg

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