» Articles » PMID: 28560855

N-Heterocyclic Phosphenium Complex of Manganese: Synthesis and Catalytic Activity in Ammonia Borane Dehydrogenation

Overview
Journal Chemistry
Specialty Chemistry
Date 2017 Jun 1
PMID 28560855
Citations 8
Authors
Affiliations
Soon will be listed here.
Abstract

A neutral N-heterocyclic phosphenium complex of manganese was synthesised by a metathesis approach and characterised by IR, NMR, and XRD studies. The short P-Mn distance suggests a substantial metal-ligand double bond character. Reaction with a hydride produced an anionic phosphine complex, which was also characterised by IR and NMR spectroscopy and, after anion exchange, a single-crystal XRD study. Protonation of the anion occurs at the metal to yield a neutral phosphine metal carbonyl hydride, which releases dihydrogen upon irradiation with UV light. These reactions confirm the electrophilic nature of the phosphenium ligand and suggest that the title complex might undergo reactions displaying metal-ligand cooperativity. Surprisingly, reaction with ammonia borane (AB) did not proceed under transfer hydrogenation of the Mn=P double bond but through the catalytic dehydrogenation of AB. The phosphenium complex behaves here as a class II catalyst, which dehydrogenates AB to NH BH that was trapped with cyclohexene. Computational model studies led to the identification of two possible catalytic cycles, which differ in the regioselectivity of the initial AB activation step. In one case, the activation proceeds as cooperative transfer hydrogenation of the Mn=P bond, whereas in the other case a H /H pair is transferred to the phosphorus atom and a nitrogen atom of the phosphenium unit, resulting in a ligand-centred reaction in which the metal fragment acts merely as stabilising substituent. Unexpectedly, this pathway, which constitutes a new reaction mode for phosphenium complexes, seems to be better in accord with experimental findings on the course of the catalysis.

Citing Articles

Two active species from a single metal halide precursor: a case study of highly productive Mn-catalyzed dehydrogenation of amine-boranes intermolecular bimetallic cooperation.

Gulyaeva E, Osipova E, Kovalenko S, Filippov O, Belkova N, Vendier L Chem Sci. 2024; 15(4):1409-1417.

PMID: 38274083 PMC: 10806649. DOI: 10.1039/d3sc05356c.


Gradual Coordination and Reversible P-P Bond Activation of a P -Unit with Transition Metal Carbonyls.

Franz R, Gal D, Bruhn C, Kelemen Z, Pietschnig R Adv Sci (Weinh). 2023; 11(11):e2306805.

PMID: 38161225 PMC: 10953586. DOI: 10.1002/advs.202306805.


P-C, P-N, and M-N Bond Formation Processes in Reactions of Heterometallic Phosphinidene-Bridged MoMn and MoRe Complexes with Diazoalkanes and Organic Azides to Build Three- to Five-Membered Phosphametallacycles.

Alvarez M, Cuervo P, Garcia M, Ruiz M, Vega P Inorg Chem. 2022; 61(46):18486-18495.

PMID: 36350690 PMC: 9682477. DOI: 10.1021/acs.inorgchem.2c02720.


Two-Site O-H Addition to an Iridium Complex Featuring a Nonspectator Tricoordinate Phosphorus Ligand.

Drance M, Tanushi A, Radosevich A J Am Chem Soc. 2022; 144(44):20243-20248.

PMID: 36301929 PMC: 9662588. DOI: 10.1021/jacs.2c10087.


Low temperature dehydrogenation properties of ammonia borane within carbon nanotube arrays: a synergistic effect of nanoconfinement and alane.

Cao Z, Ouyang L, Felderhoff M, Zhu M RSC Adv. 2022; 10(32):19027-19033.

PMID: 35518327 PMC: 9053937. DOI: 10.1039/d0ra02283g.