| Literature DB >> 33998720 |
Mandeep Kaur1, Noor U Din Reshi1, Kamaless Patra1, Arindom Bhattacherya1, Sooraj Kunnikuruvan2, Jitendra K Bera1.
Abstract
A Cp*Ir(III) complex (1) of a newly designed ligand L1 featuring a proton-responsive pyridyl(benzamide) appended on N-heterocyclic carbene (NHC) has been synthesized. The molecular structure of 1 reveals a dearomatized form of the ligand. The protonation of 1 with HBF4 in tetrahydrofuran gives the corresponding aromatized complex [Cp*Ir(L1 H)Cl]BF4 (2). Both compounds are characterized spectroscopically and by X-ray crystallography. The protonation of 1 with acid is examined by 1 H NMR and UV-vis spectra. The proton-responsive character of 1 is exploited for catalyzing α-alkylation of ketones and β-alkylation of secondary alcohols using primary alcohols as alkylating agents through hydrogen-borrowing methodology. Compound 1 is an effective catalyst for these reactions and exhibits a superior activity in comparison to a structurally similar iridium complex [Cp*Ir(L2 )Cl]PF6 (3) lacking a proton-responsive pendant amide moiety. The catalytic alkylation is characterized by a wide substrate scope, low catalyst and base loadings, and a short reaction time. The catalytic efficacy of 1 is also demonstrated for the syntheses of quinoline and lactone derivatives via acceptorless dehydrogenation, and selective alkylation of two steroids, pregnenolone and testosterone. Detailed mechanistic investigations and DFT calculations substantiate the role of the proton-responsive ligand in the hydrogen-borrowing process.Entities:
Keywords: Borrowing-Hydrogen; Homogeneous Catalysis; Hydrogen transfer; Metal-Ligand Cooperation; Proton-Responsive Ligand; Reaction Mechanism
Year: 2021 PMID: 33998720 DOI: 10.1002/chem.202101360
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236