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Stable group 8 metal porphyrin mono- and bis(dialkylcarbene) complexes: synthesis, characterization, and catalytic activity

Authors :
Kam-Hung Low
Jun-Long Zhang
Chi-Ming Che
Hai-Xu Wang
Jie-Sheng Huang
Qingyun Wan
Cong-Ying Zhou
Source :
Chemical Science
Publication Year :
2020
Publisher :
Royal Society of Chemistry (RSC), 2020.

Abstract

We report the isolation, X-ray crystal structures, reactivity and DFT calculations of iron- and ruthenium-mono(dialkylcarbene) and osmium-bis(dialkylcarbene) porphyrins and diarylcarbene transfer/insertion reactions catalyzed by iron-mono(dialkylcarbene) porphyrin.<br />Alkyl-substituted carbene (CHR or CR2, R = alkyl) complexes have been extensively studied for alkylcarbene (CHR) ligands coordinated with high-valent early transition metal ions (a.k.a. Schrock carbenes or alkylidenes), yet dialkylcarbene (CR2) complexes remain less developed with bis(dialkylcarbene) species being little (if at all) explored. Herein, several group 8 metal porphyrin dialkylcarbene complexes, including Fe- and Ru-mono(dialkylcarbene) complexes [M(Por)(Ad)] (1a,b, M = Fe, Por = porphyrinato dianion, Ad = 2-adamantylidene; 2a,b, M = Ru) and Os-bis(dialkylcarbene) complexes [Os(Por)(Ad)2] (3a–c), are synthesized and crystallographically characterized. Detailed investigations into their electronic structures reveal that these complexes are formally low-valent M(ii)-carbene in nature. These complexes display remarkable thermal stability and chemical inertness, which are rationalized by a synergistic effect of strong metal-carbene covalency, hyperconjugation, and a rigid diamondoid carbene skeleton. Various spectroscopic techniques and DFT calculations suggest that the dialkylcarbene Ad ligand is unique compared to other common carbene ligands as it acts as both a potent σ-donor and π-acceptor; its unique electronic and structural features, together with the steric effect of the porphyrin macrocycle, make its Fe porphyrin complex 1a an active and robust catalyst for intermolecular diarylcarbene transfer reactions including cyclopropanation (up to 90% yield) and X–H (X = S, N, O, C) insertion (up to 99% yield) reactions.

Details

ISSN :
20416539 and 20416520
Volume :
11
Database :
OpenAIRE
Journal :
Chemical Science
Accession number :
edsair.doi.dedup.....87ddfaee59c8acd1d1da516351ae49bb
Full Text :
https://doi.org/10.1039/c9sc05432d