首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Disentangling the IR spectra of 2,3,3,3-tetrafluoropropene using an ab initio description of vibrational polyads by means of canonical Van Vleck perturbation theory
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Disentangling the IR spectra of 2,3,3,3-tetrafluoropropene using an ab initio description of vibrational polyads by means of canonical Van Vleck perturbation theory

机译:使用AB Initio通过Canonical Van Vleck扰动理论使用AB Initio描述振动多达的AB初始描述来解开2,3,3,3-四氟丙烯的IR光谱

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The vibrational spectra of 2,3,3,3-tetrafluoropropene (2333TFP) are studied in the infrared experimentally and theoretically by the canonical second-order Van Vleck operator perturbation theory (CVPT2) and full quartic potential energy surface (PES). 2333TFP belongs to hydrofluoroolefins (HFOs) considered among the most promising alternatives to the hydrofluorocarbons presently in use in refrigeration. The medium resolution infrared spectra of gaseous 2333TFP were recorded in the range 9500-30 cm(-1). The integrated IR intensities for all bands falling between 6300-400 cm(-1) were accurately determined. Theoretical descriptions of up to four-quanta anharmonic vibrational states of 2333TFP are performed using the state-of-the-art numerical-analytic implementation of CVPT2. High quality harmonic frequencies, obtained at different coupled-cluster levels of theory up to the CCSD(T*)-F12c/VTZ-F12 model were combined with the full quartic MP2/cc-pVTZ anharmonic force field to form the hybrid PES. All Fermi and Darling-Dennison resonances were detected using a universal criterion and treated with the variational CVPT2/VCI stage by using two-, three-, and four-quanta harmonic oscillator basis sets. General recommendations for choosing such basis sets in future studies are formulated. In addition to all fundamentals and their resonance satellites, the vibrational analysis led to the assignment of virtually all observed first/second overtone and binary/ternary combination bands. Computed dipole moment first derivatives in the principal axis system yielded reliable predictions of band shapes for fundamental transitions in good agreement with observed counterparts. Computed anharmonic IR intensities showed an excellent agreement with observed data in the measured ranges. The fundamental spectroscopic effect of excited resonances is observed experimentally and explained theoretically as a universal mechanism of formation of vibrational polyads. The efficiency of the CVPT2/VCI approach employed is clearly demonstrated and can be considered as a benchmark for modeling vibrational states and interpretation of vibrational spectra of semi-rigid molecules. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过规范二阶范文VLECK操作员扰动理论(CVPT2)和全部潜在能量表面(PE)在实验和理论上研究了2,3,3,3,3-四氟丙烯(2333TFP)的振动光谱。 2333TFP属于目前在制冷中使用最有前途的氢氟烃的最有前途替代品中的氢氟烯烃(HFOS)。将气态2333TFP的中谱分辨率红外光谱记录在9500-30cm(-1)的范围内。为落在6300-400cm(-1)之间的所有频段的集成红外强度被精确地确定。使用CVPT2的最先进的数值分析实施进行2333TFP的高达四量子anharmonic振动状态的理论描述。高质量的谐波频率,在不同耦合集群理论水平上获得的理论,由CCSD(T *) - F12C / VTZ-F12模型与全静脉MP2 / CC-PVTZ Anharmonic Force字段相结合以形成混合PES。使用通用标准检测所有费米和达令 - 丹尼逊共振,并通过使用两种,三个和四维谐波振荡器基础组对变分CVPT2 / VCI阶段进行处理。制定了在未来的研究中选择此类基础集的一般建议。除了所有基本原因及其共振卫星之外,振动分析还导致几乎所有观察到的第一/第二泛音和二元/三元组合带的分配。所计算的偶极矩在主轴系统中的第一衍生物产生了与观察到的对应物良好协议的基本转型的可靠预测。计算的Anharmonic IR强度表现出与测量范围中观察到的数据的良好协议。实验观察激发共振的基本光谱效果,从理论上以理论上解释为振动多亚族的普遍形成机制。采用的CVPT2 / VCI方法的效率明确说明,可以被认为是用于建模振动状态和半刚性分子振动光谱的基准。 (c)2019年elestvier有限公司保留所有权利。

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