The reaction of [Zr(Tren )(Cl)] [Zr1; Tren =N(CH CH NSiMe Bu ) ] with NaPH gave the terminal parent phosphanide complex [Zr(Tren )(PH )] [Zr2; Zr-P=2.690(2) Å]. Treatment of Zr2 with one equivalent of KCH C H and two equivalents of benzo-15-crown-5 ether (B15C5) afforded an unprecedented example (outside of matrix isolation) of a structurally authenticated transition-metal terminal parent phosphinidene complex [Zr(Tren )(PH)][K(B15C5) ] [Zr3; Zr=P=2.472(2) Å]. DFT calculations reveal a polarized-covalent Zr=P double bond, with a Mayer bond order of 1.48, and together with IR spectroscopic data also suggest an agostic-type Zr⋅⋅⋅HP interaction [∡ =66.7°] which is unexpectedly similar to that found in cryogenic, spectroscopically observed phosphinidene species. Surprisingly, computational data suggest that the Zr=P linkage is similarly polarized, and thus as covalent, as essentially isostructural U=P and Th=P analogues.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5575506PMC
http://dx.doi.org/10.1002/anie.201703870DOI Listing

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