| Literature DB >> 29997873 |
Tomoya Shiro1, Anne Schuhmacher1, Moritz K Jackl1, Jeffrey W Bode1.
Abstract
We report the facile formation of trifluoroborate-iminiums (TIMs) from potassium acyltrifluoroborates (KATs) and the transformation of TIMs to α-aminotrifluoroborates by reduction or Grignard additions. Conditions for the hydrolysis of α-aminotrifluoroborates to α-aminoboronic acids, which are important biologically active compounds, were established. This new methodology allows access to sterically demanding α-aminoboronic acids that are not easily prepared with currently available methods. This work also introduces TIMs, that can be easily prepared and handled, as a new category of functional groups that serve as precursors to valuable organic compounds.Entities:
Year: 2018 PMID: 29997873 PMCID: PMC6000978 DOI: 10.1039/c8sc01486h
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Overview of the chemistry of TIMs including formation from KATs and transformation to α-aminotrifluoroborates and α-aminoboronic acids.
Conditions for the formation of TIMs
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| Entry | Amine | Acid | Conditions | Conversion |
| 1 | 2.0 M in THF | None | CH3CN (0.2 M), 8 h | <5% |
| 2 | HCl salt | None | CH3CN (0.2 M), 1 h | 94% |
| 3 | 2.0 M in THF | AcOH | CH3CN (0.2 M), 15 min | 93% |
| 4 | 2.0 M in THF | CF3CO2H | CH3CN (0.2 M), 15 min | 90% |
| 5 | 2.0 M in THF | AcOH | DMF (0.2 M), 1 h | 100% |
| 6 | 2.0 M in THF | AcOH | CH3CN (0.02 M), 5 h | 98% |
| 7 | 2.0 M in THF | AcOH | CH3CN (0.002 M), 8 h | 97% |
Product detected by LC-MS and TLC and conversion determined by LC-MS.
Isolated yields.
Scheme 1Substrate scope for the formation of TIMs from KATs and amines. DMF used instead of CH3CN.
Stability tests for TIMs toward different reagents and in buffers at different pHs
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| Entry | Conditions | Conversion | ||
| 2 h | 16 h | 24 h | ||
| 1 | Et3N (5.00 equiv.) | 0% | ||
| 2 | Piperidine (20.0 equiv.) | 0% | ||
| 3 | CF3CO2H (0.1 mL) | 0% | ||
| 4 | aq. HCl (0.1 M, pH 1.2) | 0% | ||
| 5 | aq. citric acid (0.1 M, pH 2.0) | 0% | ||
| 6 | aq. citric acid/K2HPO4 buffer (0.1 M, pH 3.0) | 0% | 2% | |
| 7 | aq. citric acid/K2HPO4 buffer (0.1 M, pH 5.0) | 2% | 5% | |
| 8 | aq. KH2PO4/K2HPO4 buffer (0.1 M, pH 7.0) | 4% | 14% | 19% |
Conversion determined using LC-MS.
CH2Cl2 used as solvent instead of CH3CN. Solvolysis of the BF3 group was never observed under aqueous conditions.
Scheme 2Substrate scope for the reduction of TIMs yielding monosubstituted α-aminotrifluoroborates.
Scheme 3Substrate scope for the addition of Grignard reagents to TIMs yielding fully substituted α-aminotrifluoroborates.
Scheme 4Substrate scope for the protodeborylation of fully substituted α-aminotrifluoroborates using Zr(OiPr)4.
Scheme 5Substrate scope for the formation of α-aminoboronic acids from α-aminotrifluoroborates using SiCl4. Compound 58 and 62 were isolated as TFA salts after purification by preparative HPLC.