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狭缝射流放电中超声冷却的水合氢离子:HD2O+的高分辨率红外光谱与隧穿动力学

Supersonically cooled hydronium ions in a slit-jet discharge: high-resolution infrared spectroscopy and tunneling dynamics of HD2O+.

作者信息

Dong Feng, Uy Dairene, Davis Scott, Child Mark, Nesbitt David J

机构信息

JILA, National Institute of Standards and Technology, University of Colorado, Boulder, Colorado 80309, USA.

出版信息

J Chem Phys. 2005 Jun 8;122(22):224301. doi: 10.1063/1.1924699.

Abstract

Jet-cooled high-resolution infrared spectra of partially deuterated hydronium ion (HD2O+) in the O-H stretch region (nu3 band) are obtained for the first time, exploiting the high ion densities, long absorption path lengths, and concentration modulation capabilities of the slit-jet discharge spectrometer. Least-squares analysis with a Watson asymmetric top Hamiltonian yields rovibrational constants and provides high level tests of ab initio molecular structure predictions. Transitions out of both the lower (nu3(+)<--0(+)) and the upper (nu3(-)<--0(-)) tunneling levels, as well as transitions across the tunneling gap (nu3(-)<--0(+)) are observed. The nu3(-)<--0(+) transitions in HD2O+ acquire oscillator strength by loss of D(3h) symmetry, and permit both ground-state-[27.0318(72) cm(-1)] and excited-state-[17.7612(54) cm(-1)]-tunneling splittings to be determined to spectroscopic precision from a single rovibrational band. The splittings and band origins calculated with recent high level ab initio six-dimensional potential surface predictions for H3O+ and isotopomers [X. C. Huang, S. Carter, and J. M. Bowman, J. Chem. Phys. 118, 5431 (2003); T. Rajamaki, A. Miani, and L. Halonen, J. Chem. Phys. 118, 10929 (2003)] are in very good agreement with the current experimental results.

摘要

利用狭缝射流放电光谱仪的高离子密度、长吸收路径长度和浓度调制能力,首次获得了部分氘代水合氢离子(HD2O+)在O-H伸缩振动区域(ν3带)的喷射冷却高分辨率红外光谱。用沃森非对称陀螺哈密顿量进行最小二乘法分析,得到了振转常数,并对从头算分子结构预测进行了高水平测试。观察到了从较低(ν3(+)←0(+))和较高(ν3(-)←0(-))隧穿能级的跃迁,以及跨越隧穿间隙(ν3(-)←0(+))的跃迁。HD2O+中的ν3(-)←0(+)跃迁通过失去D(3h)对称性获得振子强度,并允许从单个振转带中以光谱精度确定基态-[27.0318(72) cm(-1)]和激发态-[17.7612(54) cm(-1)]-隧穿分裂。用最近对H3O+及其同位素异构体进行的高水平从头算六维势能面预测[X. C. Huang, S. Carter, and J. M. Bowman, J. Chem. Phys. 118, 5431 (2003); T. Rajamaki, A. Miani, and L. Halonen, J. Chem. Phys. 118, 10929 (2003)]计算得到的分裂和带起源与当前实验结果非常吻合。

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