4.6 Article

Se•••N Chalcogen Bond and Se•••X Halogen Bond Involving F2C=Se: Influence of Hybridization, Substitution, and Cooperativity

Journal

JOURNAL OF PHYSICAL CHEMISTRY A
Volume 119, Issue 14, Pages 3518-3527

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpca.5b00783

Keywords

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Funding

  1. Outstanding Youth Natural Science Foundation of Shandong Province [JQ201006]
  2. Key Project of Natural Science Foundation of Shandong Province of China [ZR2013HZ004]
  3. National Natural Science Foundation of China [51278443]

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Quantum-chemical calculations have been performed for the chalcogen- and halogen-bonded complexes of F2CSe with a series of nitrogen bases (N-2, NCH, NH3, NHCH2, NCLi, and NMe3) and dihalogen molecules (BrCl, ClF, and BrF), respectively. Both types of interactions are mainly driven by the electrostatic and orbital interactions. The chalcogen bond becomes stronger in the order of NCH (sp) < NH3 (sp(3)) < NHCH2 (sp(2)), showing some inconsistence with the electro-negativity of the hybridized N atom. The Li and methyl groups have an enhancing effect on the strength of chalcogen bond; however, the former is jointly achieved through the electrostatic and orbital interactions, whereas the orbital interaction has dominant contribution to the latter enhancement. The halogen bond with F2CX (X = O, S, Se) as the electron donor is stronger for the heavier chalcogen atom, exhibiting a reverse dependence on the chalcogen atom with that in hydrogen bonds. The halogen bond is further strengthened by the presence of chalcogen bond in the ternary complexes. In addition, CSD research confirms the abundance of Se center dot center dot center dot N interaction in crystal materials.

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