Chalcogen bonding of two ligands to hypervalent YF 4 (Y = S, Se, Te, Po)

The ability of two NH3 ligands to engage in simultaneous chalcogen bonds to a hypervalent YF4 molecule, with Y = S, Se, Te, Po, is assessed via quantum calculations. The complex can take on one of two different geometries. The cis structure places the two ligands adjacent to one another in a pseudo-...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2019-09, Vol.21 (37), p.20829-20839
Hauptverfasser: Zierkiewicz, Wiktor, Wysokiński, Rafał, Michalczyk, Mariusz, Scheiner, Steve
Format: Artikel
Sprache:eng
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Zusammenfassung:The ability of two NH3 ligands to engage in simultaneous chalcogen bonds to a hypervalent YF4 molecule, with Y = S, Se, Te, Po, is assessed via quantum calculations. The complex can take on one of two different geometries. The cis structure places the two ligands adjacent to one another in a pseudo-octahedral geometry, held there by a pair of σ-hole chalcogen bonds. The bases can also lie nearly opposite one another, in a distorted octahedron containing one π-hole and one strained σ-hole bond. The cis geometry is favored for Y = S, while Te, and Po tend toward the trans structure; they are nearly equally stable for Se. In either case, the binding energy rises rapidly with the size of the Y atom, exceeding 30 kcal mol-1 for PoF4.
ISSN:1463-9076
1463-9084
DOI:10.1039/C9CP04006D