| Literature DB >> 23828793 |
Michal Szostak1, Malcolm Spain, David J Procter.
Abstract
Entities:
Keywords: CN cleavage; amides; electron transfer; lanthanides; thulium diiodide
Mesh:
Substances:
Year: 2013 PMID: 23828793 PMCID: PMC4265963 DOI: 10.1002/anie.201303178
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Figure 1a) Cleavage of unactivated σ C−N bonds in amides. b) Classical and nonclassical lanthanide(II) iodides. c) This study.
Optimization of the C−N bond cleavage in unactivated amides in the presence of LnI2(ROH).
| Entry | LnI2 | LnI2 (equiv) | ROH | ROH (equiv) | Yield [%] | |
|---|---|---|---|---|---|---|
| 1 | TmI2 | 3 | – | – | 2 h | <2 |
| 2 | TmI2 | 3 | MeOH | 10 | 3 min | <2 |
| 3 | TmI2 | 3 | MeOH | 100 | 3 min | 48 (77) |
| 4 | TmI2 | 3 | MeOH | 100 | 3 min | <2 |
| 5 | TmI2 | 3 | H2O | 150 | 3 min | <2 |
| 6 | SmI2 | 3 | – | – | 3 h | <2 |
| 7 | SmI2 | 3 | MeOH | 100 | 3 h | <2 |
| 8 | SmI2 | 3 | H2O | 100 | 1 h | <2 |
With respect to LnI2.
Time elapsed until characteristic color change from TmII to TmIII.
Determined by 1H NMR spectroscopy and/or GC–MS.
In parentheses, yield based on the recovered starting material. TmI2 (6 equiv) afforded 2 a in 45 % yield.
The corresponding amine was used instead of the amide.
Azetidinyl amide 1 d used instead of the pyrrolidinyl amide. Reaction conditions: LnI2 (3 equiv), ROH (H2O, 150 equiv; MeOH, 100 equiv), THF, 23 °C. See the Supporting Information for details.
Scheme 1Cleavage of unactivated σ C−N bonds in amides in the presence of TmI2(ROH) at 23 °C.
Reduction of aliphatic esters in the presence of TmI2(ROH) at 23 °C.[a]
| Entry | Ester/Acid | ROH | Yield [%] | |
|---|---|---|---|---|
| 1 | H2O | 2–3 | 88 | |
| 2 | MeOH | 2–3 | 99 | |
| 3 | MeOH | 2–3 | 96 | |
| 4 | MeOH | 2–3 | 85 | |
| 5 | MeOH | 2–3 | 94 | |
| 6 | MeOH | 2–3 | 63 | |
| 7 | MeOH | 2–3 | 58 | |
| 8 | MeOH | 2–3 | <5 |
Time elapsed until characteristic color change from TmII to TmIII.
Determined by 1H NMR spectropscopy.
Decanoic acid recovered in >95 %. Reaction conditions: TmI2 (6–8 equiv), ROH (H2O, 150 equiv; MeOH, 100 equiv), THF, 23 °C. See the Supporting Information for details.
Determination of the redox potential of TmI2(ROH) by reduction of aromatic hydrocarbons.
| Entry | Hydrocarbon | − | Reaction with TmI2 observed |
|---|---|---|---|
| 1 | cyclooctatetraene | 1.83 | + |
| 2 | anthracene | 1.98 | + |
| 3 | stilbene | 2.21 | + |
| 4 | 1,4-diphenylbenzene | 2.40 | + |
| 5 | 1,3,5-triphenylbenzene | 2.51 | + |
| 6 | naphthalene | 2.61 | + |
| 7 | styrene | 2.65 | + |
| 8 | benzene | 3.42 | − |
In volts vs. SCE; E1/2 describes half-reduction potential; see Ref. 17.
Ref. 13d.
Determined by GC and/or 1H NMR spectroscopy.
Scheme 2Investigating the mechanism of ester reduction with TmI2(ROH).