Ramasami Ponnadurai, Ford Thomas A
Computational Chemistry Group, Department of Chemistry, Faculty of Science, University of Mauritius, Réduit, 80837, Mauritius.
Department of Chemistry, University of South Africa, Private Bag X6, Florida, 1710, South Africa.
J Mol Model. 2022 Sep 5;28(10):294. doi: 10.1007/s00894-022-05285-7.
A search has been conducted, by means of ab initio molecular orbital theory, for potential tetrel-bonded complexes formed between the fluorinated methanes methyl fluoride, difluoromethane and fluoroform, and the related hydrides ammonia, water, hydrogen fluoride, phosphine, hydrogen sulphide and hydrogen chloride. Eleven such complexes have been identified, six containing CHF and five CHF. The complexes are typically less strongly bound than their hydrogen-bonded counterparts, and the interaction energies vary in a consistent way with the periodic trend of the electron donors. The intermolecular separations and changes of the relevant intramolecular bond lengths, the wavenumber shifts of the critical vibrational modes and the extents of charge transfer correlate, by and large, with the strengths of interaction.
通过从头算分子轨道理论,对氟化甲烷(氟甲烷、二氟甲烷和三氟甲烷)与相关氢化物(氨、水、氟化氢、磷化氢、硫化氢和氯化氢)之间形成的潜在四元键复合物进行了搜索。已鉴定出11种这样的复合物,其中6种含有CHF,5种含有CHF。这些复合物的结合通常比其氢键对应物弱,并且相互作用能随电子供体的周期性趋势以一致的方式变化。分子间间距和相关分子内键长的变化、关键振动模式的波数位移以及电荷转移程度在很大程度上与相互作用强度相关。