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Structure, Conformational Equilibria, and Weak Hydrogen Bonding in the CH2F2−CF3CH2F Dimer

To probe the multiple configurations of a weakly bound intermolecular complex, the difluoromethane and 1,1,1,2‐tetrafluoroethane dimer was investigated by using pulsed jet Fourier transform microwave spectroscopy coupled with quantum chemical calculations. Three isomers were detected in the superson...

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Bibliographic Details
Published in:Chemphyschem 2018-10, Vol.19 (20), p.2655-2661
Main Authors: Lu, Tao, Chen, Junhua, Zhang, Jiaqi, Gou, Qian, Xia, Zhining, Feng, Gang
Format: Article
Language:English
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Summary:To probe the multiple configurations of a weakly bound intermolecular complex, the difluoromethane and 1,1,1,2‐tetrafluoroethane dimer was investigated by using pulsed jet Fourier transform microwave spectroscopy coupled with quantum chemical calculations. Three isomers were detected in the supersonic jet. Spectroscopic assignments, ab initio calculations and quantum theory of atoms in molecules (QTAIM) analyses prove that all the observed isomers are stabilized through a net of three weak C−H⋅⋅⋅F−C interactions. The interaction energies are estimated to be within 12–13 kJ mol−1, dominated by electrostatic and dispersion according to Symmetry‐Adapted Perturbation Theory (SAPT) analysis. The spectroscopic measurements were also extended to three and two 13C isotopologues in natural abundance for the isomers II and III, respectively, which lead to precisely structural determinations of these two isomers. The comparison of the relative intensity of these isomers measured in the carrier gases of argon and helium evidenced that isomer II is the global minimum, while the intensities measured in helium suggested that the population of the three isomers in the jet to be NI/NII/NIII≈1/11/4. Conformational landscape of a weakly bound cluster: Three isomers of the heterodimer of difluoromethane‐1,1,1,2‐tetrafluoroethane stabilized through a net of three weak C−H⋅⋅⋅F−C interactions are investigated by Fourier‐transform microwave spectroscopy.
ISSN:1439-4235
1439-7641
DOI:10.1002/cphc.201800636