Concepedia

Publication | Open Access

Symmetry of three-center, four-electron bonds

62

Citations

34

References

2020

Year

Abstract

Three-center, four-electron bonds provide unusually strong interactions; however, their nature remains ununderstood. Investigations of the strength, symmetry and the covalent <i>versus</i> electrostatic character of three-center hydrogen bonds have vastly contributed to the understanding of chemical bonding, whereas the assessments of the analogous three-center halogen, chalcogen, tetrel and metallic [small sigma, Greek, circumflex]-type long bonding are still lagging behind. Herein, we disclose the X-ray crystallographic, NMR spectroscopic and computational investigation of three-center, four-electron [D-X-D]<sup>+</sup> bonding for a variety of cations (X<sup>+</sup> = H<sup>+</sup>, Li<sup>+</sup>, Na<sup>+</sup>, F<sup>+</sup>, Cl<sup>+</sup>, Br<sup>+</sup>, I<sup>+</sup>, Ag<sup>+</sup> and Au<sup>+</sup>) using a benchmark bidentate model system. Formation of a three-center bond, [D-X-D]<sup>+</sup> is accompanied by an at least 30% shortening of the D-X bonds. We introduce a numerical index that correlates symmetry to the ionic size and the electron affinity of the central cation, X<sup>+</sup>. Providing an improved understanding of the fundamental factors determining bond symmetry on a comprehensive level is expected to facilitate future developments and applications of secondary bonding and hypervalent chemistry.

References

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