Homo- and heterodehydrocoupling of phosphines mediated by alkali metal catalysts

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Date
2019
Volume
10
Issue
Journal
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Publisher
[London] : Nature Publishing Group UK
Abstract

Catalytic chemistry that involves the activation and transformation of main group substrates is relatively undeveloped and current examples are generally mediated by expensive transition metal species. Herein, we describe the use of inexpensive and readily available tBuOK as a catalyst for P–P and P–E (E = O, S, or N) bond formation. Catalytic quantities of tBuOK in the presence of imine, azobenzene hydrogen acceptors, or a stoichiometric amount of tBuOK with hydrazobenzene, allow efficient homodehydrocoupling of phosphines under mild conditions (e.g. 25 °C and < 5 min). Further studies demonstrate that the hydrogen acceptors play an intimate mechanistic role. We also show that our tBuOK catalysed methodology is general for the heterodehydrocoupling of phosphines with alcohols, thiols and amines to generate a range of potentially useful products containing P–O, P–S, or P–N bonds.

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Keywords
carbon nuclear magnetic resonance, catalysis, catalyst, crystal structure, electron spin resonance, electron transport, hydrogen bond, oxidative coupling, phosphorus nuclear magnetic resonance, proton nuclear magnetic resonance, stoichiometry, temperature, X ray diffraction
Citation
Wu, L., Annibale, V. T., Jiao, H., Brookfield, A., Collison, D., & Manners, I. (2019). Homo- and heterodehydrocoupling of phosphines mediated by alkali metal catalysts. 10. https://doi.org//10.1038/s41467-019-09832-4
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CC BY 4.0 Unported