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Experimental and computational study of alkane dehydrogenation catalyzed by a carbazolide-based rhodium PNP pincer complex.

Authors :
Bézier D
Guan C
Krogh-Jespersen K
Goldman AS
Brookhart M
Source :
Chemical science [Chem Sci] 2016 Apr 21; Vol. 7 (4), pp. 2579-2586. Date of Electronic Publication: 2016 Jan 20.
Publication Year :
2016

Abstract

A rhodium complex based on the bis-phosphine carbazolide pincer ligand was investigated in the context of alkane dehydrogenation and in comparison with its iridium analogue. (carb-PNP)RhH <subscript>2</subscript> was found to catalyze cyclooctane/ t -butylethylene (COA/TBE) transfer dehydrogenation with a turnover frequency up to 10 min <superscript>-1</superscript> and turnover numbers up to 340, in marked contrast with the inactive Ir analogue. TONs were limited by catalyst decomposition. Through a combination of mechanistic, experimental and computational (DFT) studies the difference between the Rh and Ir analogues was found to be attributable to the much greater accessibility of the 14-electron (carb-PNP)M(i) fragment in the case of Rh. In contrast, Ir is more strongly biased toward the M(iii) oxidation state. Thus (carb-PNP)RhH <subscript>2</subscript> but not (carb-PNP)IrH <subscript>2</subscript> can be dehydrogenated by sacrificial hydrogen acceptors, particularly TBE. The rate-limiting segment of the (carb-PNP)Rh-catalyzed COA/TBE transfer dehydrogenation cycle is found to be the dehydrogenation of COA. Within this segment, the rate-determining step is calculated to be (carb-PNP)Rh(cyclooctyl)(H) undergoing formation of a β-H agostic intermediate, while the reverse step (loss of a β-H agostic interaction) is rate-limiting for hydrogenation of the acceptors TBE and ethylene. Such a step has not previously been proposed as rate-limiting in the context of alkane dehydrogenation, nor, to our knowledge, has the reverse step been proposed as rate-limiting for olefin hydrogenation.

Details

Language :
English
ISSN :
2041-6520
Volume :
7
Issue :
4
Database :
MEDLINE
Journal :
Chemical science
Publication Type :
Academic Journal
Accession number :
28660029
Full Text :
https://doi.org/10.1039/c5sc04794c