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首页> 外文期刊>The Journal of Chemical Physics >The hyperfine structure in the rotational spectra of (D2O)-O-17 and (HDO)-O-17: Confirmation of the absolute nuclear magnetic shielding scale for oxygen
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The hyperfine structure in the rotational spectra of (D2O)-O-17 and (HDO)-O-17: Confirmation of the absolute nuclear magnetic shielding scale for oxygen

机译:(D2O)-O-17和(HDO)-O-17旋转光谱中的超精细结构:氧的绝对核磁屏蔽规模的确认

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Guided by theoretical predictions, the hyperfine structures of the rotational spectra of mono-and bideuterated-water containing O-17 have been experimentally investigated. To reach sub-Doppler resolution, required to resolve the hyperfine structure due to deuterium quadrupole coupling as well as to spin-rotation (SR) and dipolar spin-spin couplings, the Lamb-dip technique has been employed. The experimental investigation and in particular, the spectral analysis have been supported by high-level quantum-chemical computations employing coupled-cluster techniques and, for the first time, a complete experimental determination of the hyperfine parameters involved was possible. The experimentally determined O-17 spin-rotation constants of (D2O)-O-17 and (HDO)-O-17 were used to derive the paramagnetic part of the corresponding nuclear magnetic shielding constants. Together with the computed diamagnetic contributions as well as the vibrational and temperature corrections, the latter constants have been employed to confirm the oxygen nuclear magnetic shielding scale, recently established on the basis of spin-rotation data for (H2O)-O-17 [Puzzarini et al., J. Chem. Phys. 131, 234304 (2009)]. (c) 2015 AIP Publishing LLC.
机译:在理论预测的指导下,对含O-17的单和双氘水旋转光谱的超精细结构进行了实验研究。为了达到亚多普勒分辨率,这是解决由于氘四极耦合以及自旋旋转(SR)和偶极自旋-自旋耦合而导致的超精细结构所必需的,已经采用了Lamb-dip技术。实验研究,尤其是光谱分析,已得到采用耦合簇技术的高级量子化学计算的支持,并且首次有可能对涉及的超细参数进行完整的实验确定。实验确定的(D2O)-O-17和(HDO)-O-17的O-17自旋旋转常数用于导出相应核磁屏蔽常数的顺磁部分。连同计算出的抗磁贡献以及振动和温度校正,后一常数已用于确认氧核磁屏蔽标尺,该标尺最近基于(H2O)-O-17的自旋旋转数据而建立[Puzzarini等人,化学杂志。物理131,234304(2009)]。 (c)2015 AIP Publishing LLC。

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