| Literature DB >> 28367354 |
Niki R Patel1, Christopher B Kelly1, Allison P Siegenfeld1, Gary A Molander1.
Abstract
An operationally simple, mild, redox-neutral method for the photoredox alkylation of imines is reported. Utilizing an inexpensive organic photoredox catalyst, alkyl radicals are readily generated from the single-electron oxidation of ammonium alkyl bis(catecholato)silicates and are subsequently engaged in a C-C bond-forming reaction with imines. The process is highly selective, metal-free, and does not require a large excess of the alkylating reagent or the use of acidic additives.Entities:
Keywords: hypervalent silicon; imines; photocatalysis; radical alkylation; visible light
Year: 2017 PMID: 28367354 PMCID: PMC5369175 DOI: 10.1021/acscatal.6b03665
Source DB: PubMed Journal: ACS Catal Impact factor: 13.084
Scheme 1Comparison of the Envisioned Photoredox-Mediated Radical Addition to Imines by Alkylsilicate Radical Precursors vs Standard Alkylation Approaches: (a) via Traditional Organometallic Reagents; (b) via Stoichiometric Generation of Radicals; (c) Alternate Photoredox-Based Approach Using Alkylsilicates
Screening of Select Photocatalystsa
Conversion determined by GC/MS and/or HPLC analysis. The given potentials are vs the standard calomel electrode (SCE).
Evaluation of Imines Under Photoredox Conditions Using 3aa
General reaction conditions: imine (1.0 equiv, 0.5 mmol), alkylsilicate (1.1 equiv), 4CzIPN (1 mol %), DMSO (0.1 M), rt, 24 h.
Yield in parentheses indicates yield on a 5 mmol scale.
Photoredox Alkylation of Imines Using Various Alkylsilicatesa
General reaction conditions: imine (1.0 equiv, 0.5 mmol), alkylsilicate (1.3 equiv), 4CzIPN (1 mol %), DMSO (0.1 M), rt, 24 h.
Reactions performed using 3 mol % Ru(bpy)3(PF6)2 instead of 4CzIPN.
Figure 1Postulated mechanistic pathways for imine alkylation.
Measured E1/2 of Imines Using Cyclic Voltammetry
Scheme 2Successive Photoredox-Catalyzed Alkylation/Cross-Coupling Reactions Alkylsilicates
Scheme 3Chemoselectivity in Photoredox Alkylation