首页> 外文期刊>Journal of chemical theory and computation: JCTC >CC/DFT Route toward Accurate Structures and Spectroscopic Features for Observed and Elusive Conformers of Flexible Molecules: Pyruvic Acid as a Case Study
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CC/DFT Route toward Accurate Structures and Spectroscopic Features for Observed and Elusive Conformers of Flexible Molecules: Pyruvic Acid as a Case Study

机译:CC / DFT途径向柔性分子的可观察和难以预测的构象异构体提供准确的结构和光谱特征:丙酮酸作为案例研究

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The structures and relative stabilities as well as the rotational and vibrational spectra of the three low-energy conformers of pyruvic acid (PA) have been characterized using a state-of-the-art quantum-mechanical approach designed for flexible molecules. By making use of the available experimental rotational constants for several isotopologues of the most stable PA conformer, Tc-PA, the semiexperimental equilibrium structure has been derived. The latter provides a reference for the pure theoretical determination of the equilibrium geometries for all conformers, thus confirming for these structures an accuracy of 0.001 angstrom and 0.1 deg for bond lengths and angles, respectively. Highly accurate relative energies of all conformers (Tc-, Tt-, and Ct-PA) and of the transition states connecting them are provided along with the thermodynamic properties at low and high temperatures, thus leading to conformational enthalpies accurate to 1 kJ mol(-1). Concerning microwave spectroscopy, rotational constants accurate to about 20 MHz are provided for the Tt- and Ct-PA conformers, together with the computed centrifugal-distortion constants and dipole moments required to simulate their rotational spectra. For Ct-PA, vibrational frequencies in the mid-infrared region accurate to 10 cm(-1) are reported along with theoretical estimates for the transitions in the near-infrared range, and the corresponding infrared spectrum including fundamental transitions, overtones, and combination bands has been simulated. In addition to the new data described above, theoretical results for the Tc- and Tt-PA conformers are compared with all available experimental data to further confirm the accuracy of the hybrid coupled-cluster/density functional theory (CC/DFT) protocol applied in the present study. Finally, we discuss in detail the accuracy of computational models fully based on double-hybrid DFT functionals (mainly at the B2PLYP/aug-cc-pVTZ level) that avoid the use of very expensive CC calculations.
机译:丙酮酸(PA)的三个低能构象异构体的结构和相对稳定性以及旋转光谱和振动光谱已使用为柔性分子设计的最新量子力学方法进行了表征。通过利用最稳定的PA构象异构体Tc-PA的几种同位素的可用实验旋转常数,得出了半实验平衡结构。后者为所有构象异构体的平衡几何构型的纯理论确定提供了参考,从而为这些结构确定了键长和角分别为0.001埃和0.1度的精度。提供所有构象异构体(Tc-,Tt-和Ct-PA)以及连接它们的过渡态的高精度相对能以及在低温和高温下的热力学性质,因此导致构象焓精确到1 kJ mol( -1)。关于微波光谱,为Tt-和Ct-PA构象异构体提供了精确到约20 MHz的旋转常数,以及模拟它们的旋转光谱所需的计算出的离心变形常数和偶极矩。对于Ct-PA,报告了准确到10 cm(-1)的中红外区域的振动频率,以及对近红外范围内过渡的理论估计以及相应的红外光谱,包括基本过渡,泛音和组合乐队已被模拟。除上述新数据外,还将Tc-和Tt-PA构象异构体的理论结果与所有可用的实验数据进行比较,以进一步确认在分子筛中应用的混合耦合簇/密度泛函理论(CC / DFT)协议的准确性。本研究。最后,我们将详细讨论完全基于双混合DFT功能(主要在B2PLYP / aug-cc-pVTZ级别)的计算模型的准确性,避免使用非常昂贵的CC计算。

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