An extensive series of 128 halogen-bonded complexes formed by trimethylphosphine oxide and various F-, Cl-, Br-, I- and At-containing molecules, ranging in energy from 0 to 124 kJ/mol, is studied by DFT calculations in vacuum. The results reveal correlations between R-Xâ â â O=PMe(3) halogen bond energy ÎE, Xâ â â O distance r, halogen's Ï-hole size, QTAIM parameters at halogen bond critical point and changes of spectroscopic parameters of phosphine oxide upon complexation, such as (31)P NMR chemical shift, ÎδP, and P=O stretching frequency, Îν. Some of the correlations are halogen-specific, i.e., different for F, Cl, Br, I and At, such as ÎE(r), while others are general, i.e., fulfilled for the whole set of complexes at once, such as ÎE(ÎδP). The proposed correlations could be used to estimate the halogen bond properties in disordered media (liquids, solutions, polymers, glasses) from the corresponding NMR and IR spectra.
Phosphine Oxides as Spectroscopic Halogen Bond Descriptors: IR and NMR Correlations with Interatomic Distances and Complexation Energy.
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作者:Ostras' Alexei S, Ivanov Daniil M, Novikov Alexander S, Tolstoy Peter M
| 期刊: | Molecules | 影响因子: | 4.600 |
| 时间: | 2020 | 起止号: | 2020 Mar 19; 25(6):1406 |
| doi: | 10.3390/molecules25061406 | ||
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