Ammonium and Potassium Salts of a Hexacoordinate Phosphorus(V) Anion Featuring P-O and P-C Bonds.

Inorg Chem

Department of Chemistry , University of British Columbia, Vancouver , British Columbia V6T 1Z1 , Canada.

Published: January 2019

Ammonium and potassium salts featuring the chiral mer-[P(CHCO)], mer-[1], have been isolated. Specifically, treating phosphorane P(CHCO)(CHCOH), 2, with N-containing bases [N = PhNMe, PhNH, pyridine (py), isoquinoline, (-)-brucine, N( n-CH)] afforded ammonium salts [NH]- mer-[1]. Each compound was fully characterized spectroscopically, and four were subjected to X-ray crystallographic analysis. Salts were isolated with the racemic mixture of the mer-[1] anion except in the case of [(-)-brucineH]-Λ- mer-[1], for which the crystal analyzed was enantiomerically pure. The potassium salt, K- mer-[1], was synthesized by treating 2 with KH. The solid-state structure of K- mer-[1] is a coordination polymer consisting of seven- and eight-coordinate K ions that are weakly bound by oxygen of either the racemic anion or the methanol solvent. Preliminary NMR and MS data for the formation of the Brønsted acid, H(DMF) [1], has also been obtained. An estimate of the basicity of anion mer-[1] was obtained from IR measurements of the N-H stretching frequency for [( n-CH)NH]- mer-[1]. On the basis of these measurements, anion mer-[1] was ranked similar to the classical weakly coordinating anion, [ClO], in terms of its coordinating ability.

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http://dx.doi.org/10.1021/acs.inorgchem.8b02174DOI Listing

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