| Literature DB >> 31379035 |
Anamitra Chatterjee1, Burkhard König1.
Abstract
The direct reduction of arenes and heteroarenes by visible-light irradiation remains challenging, as the energy of a single photon is not sufficient for breaking aromatic stabilization. Shown herein is that the energy accumulation of two visible-light photons allows the dearomatization of arenes and heteroarenes. Mechanistic investigations confirm that the combination of energy-transfer and electron-transfer processes generates an arene radical anion, which is subsequently trapped by hydrogen-atom transfer and finally protonated to form the dearomatized product. The photoreduction converts planar aromatic feedstock compounds into molecular skeletons that are of use in organic synthesis.Entities:
Keywords: dearomatization; electron transfer; energy transfer; photocatalysis; reduction
Year: 2019 PMID: 31379035 PMCID: PMC6790943 DOI: 10.1002/anie.201905485
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Figure 1Overview of different strategies to generate radical anions of arenes by a simplified molecular orbital depiction. DIPEA=diisopropylethylamine.
Optimization of reaction conditions.[a]
|
Entry |
Photocatalyst[b] |
(e− + H+) Donor + HAT Reagent |
Yield [%][c] |
|---|---|---|---|
|
1 |
– |
DIPEA |
<5 |
|
2 |
|
DIPEA |
88 |
|
3 |
|
DIPEA |
47 |
|
4 |
Riboflavin tetraacetate |
DIPEA |
– |
|
5 |
|
DIPEA |
6 |
|
6 |
Rhodamine 6G |
DIPEA |
<5 |
|
7 |
|
NEt3 |
83 |
|
8 |
|
tributylamine |
85 |
|
9 |
|
NPh3 |
– |
|
10 |
|
pyridine |
– |
|
11 |
|
DIPEA + Hantzsch ester |
87 |
|
12 |
|
DIPEA + MeNH3Cl |
89[d] |
[a] The reactions were performed using 0.1 mmol 4 a in 1 mL DMF under air. [b] The triplet state energy decreases in the order 1>2>Riboflavin tetraacetate>3>Rhodamine 6G. [c] Yields were determined by GC analysis with naphthalene as an internal standard. [d] Reaction time=0.5 h.
Figure 2Substrate scope of photoredox dearomatization. Yields of isolated products are shown. [a] Yield determined by NMR spectroscopy. DMF=N,N‐dimethylformamide.
Figure 3Mechanistic investigations. A) Mechanistic proposal. B) E1cB reaction proves carbanion intermediate. C) Stern–Volmer Quenching Study proves energy transfer from *IrIII to arene and electron transfer from DIPEA to *IrIII. D) EPR study proves generation of IrII species in the presence of DIPEA. E) Quadratic dependency of the product yield on irradiation density indicates the two‐photon process.