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首页> 外文期刊>The Journal of Chemical Physics >Rotational spectra of rare isotopic species of fluoroiodomethane: Determination of the equilibrium structure from rotational spectroscopy and quantum-chemical calculations
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Rotational spectra of rare isotopic species of fluoroiodomethane: Determination of the equilibrium structure from rotational spectroscopy and quantum-chemical calculations

机译:氟碘甲烷稀有同位素物种的旋转光谱:通过旋转光谱法和量子化学计算确定平衡结构

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摘要

Supported by accurate quantum-chemical calculations, the rotational spectra of the mono- and bi-deuterated species of fluoroiodomethane, CHDFI and CD _2FI, as well as of the ~(13)C-containing species, ~(13)CH _2FI, were recorded for the first time. Three different spectrometers were employed, a Fourier-transform microwave spectrometer, a millimeter/submillimter-wave spectrometer, and a THz spectrometer, thus allowing to record a huge portion of the rotational spectrum, from 5 GHz up to 1.05 THz, and to accurately determine the ground-state rotational and centrifugal-distortion constants. Sub-Doppler measurements allowed to resolve the hyperfine structure of the rotational spectrum and to determine the complete iodine quadrupole-coupling tensor as well as the diagonal elements of the iodine spin-rotation tensor. The present investigation of rare isotopic species of CH _2FI together with the results previously obtained for the main isotopologue [C. Puzzarini, G. Cazzoli, J. C. López, J. L. Alonso, A. Baldacci, A. Baldan, S. Stopkowicz, L. Cheng, and J. Gauss, J. Chem. Phys. 134, 174312 (2011); G. Cazzoli, A. Baldacci, A. Baldan, and C. Puzzarini, Mol. Phys. 109, 2245 (2011)] enabled us to derive a semi-experimental equilibrium structure for fluoroiodomethane by means of a least-squares fit procedure using the available experimental ground-state rotational constants together with computed vibrational corrections. Problems related to the missing isotopic substitution of fluorine and iodine were overcome thanks to the availability of an accurate theoretical equilibrium geometry (computed at the coupled-cluster singles and doubles level augmented by a perturbative treatment of triple excitations).
机译:在精确的量子化学计算的支持下,氟碘甲烷,CHDFI和CD _2FI的单氘代和双氘代物种以及〜(13)C物种~~(13)CH _2FI的旋转光谱为第一次录制。使用了三种不同的光谱仪:傅立叶变换微波光谱仪,毫米/亚毫米波分光仪和THz光谱仪,因此可以记录从5 GHz到1.05 THz的大部分旋转光谱,并可以准确地确定基态旋转和离心变形常数。亚多普勒测量可以解析旋转谱的超精细结构,并确定完整的碘四极耦合张量以及碘自旋旋转张量的对角元素。目前对CH _2FI稀有同位素物种的研究,以及先前获得的主要同位素同位素[C. Puzzarini,G.Cazzoli,J.C.López,J.L.Alonso,A.Baldacci,A.Baldan,S.Stopkowicz,L.Cheng和J.Gauss,J.Chem。物理134,174312(2011); G. Cazzoli,A。Baldacci,A。Baldan和C. Puzzarini,摩尔。物理109,2245(2011)]使我们能够通过最小二乘法拟合程序,使用可用的实验基态旋转常数以及计算出的振动校正量,得出氟碘甲烷的半实验平衡结构。归因于精确的理论平衡几何结构(通过三重激发的扰动处理增强了耦合簇的单双峰能级),克服了与氟和碘的同位素取代有关的问题。

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