| Literature DB >> 23616812 |
Vladimir Lamm1, Xiangcheng Pan, Tsuyoshi Taniguchi, Dennis P Curran.
Abstract
Acetic acid promotes the reduction of aldehydes and ketones by the readily available N-heterocyclic carbene borane, 1,3-dimethylimidazol-2-ylidene borane. Aldehydes are reduced over 1-24 h at room temperature with 1 equiv of acetic acid and 0.5 equiv of the NHC-borane. Ketone reductions are slower but can be accelerated by using 5 equiv of acetic acid. Aldehydes can be selectively reduced in the presence of ketones. On a small scale, products are isolated by evaporation of the reaction mixture and direct chromatography.Entities:
Keywords: N-heterocyclic carbene borane; NHC-borane; reduction
Year: 2013 PMID: 23616812 PMCID: PMC3629027 DOI: 10.3762/bjoc.9.76
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Aldehydes and ketones are reduced by 1 when silica gel is added.
Scheme 2Pilot reduction of aldehyde 2 with 1 and acetic acid.
Figure 111B NMR studies of boron products from 1 and acetic acid with and without aldehyde 2. aIn C6D6; bunreacted aldehyde remained.
Reductions of aldehydes by diMe-Imd-BH3 (1) and acetic acid.a
| entry | aldehyde | alcohol | yield |
| 1 | 92% | ||
| 2 | 79% | ||
| 3 | 89%b | ||
| 4 | 93% | ||
| 5 | 86% | ||
| 6 | 85% | ||
| 7 | 84%b | ||
aConditions: aldehyde (0.5 mmol), 1 (0.25 mmol), and AcOH (0.5 mmol) in EtOAc (2 mL) at room temperature for 24 h; breaction time was 1 h.
Reductions of ketones by diMe-Imd-BH3 (1) and acetic acid.a
| entry | ketone | alcohol | yield |
| 1 | 93% | ||
| 2 | 88% | ||
| 3 | 65%b | ||
| 4 | 88%b | ||
| 5 | 79%c | ||
| 6 | 83%d | ||
| 7 | 97%e | ||
aConditions: ketone (0.5 mmol), 1 (0.5 mmol), and AcOH (2.5 mmol) in CH2Cl2 (2 mL) at 40 °C for 24 h; bonly 1 equiv of acetic acid was used; cminor product 30 could not be separated; dreaction time was 48 h; ereaction time was 72 h.
Scheme 3Chemoselective reductions of aldehydes with 1 and acetic acid. aDetermined by 1H NMR spectroscopic analysis of the
crude product; bisolated yield after flash chromatography.