| Literature DB >> 30873238 |
Wentong Liu1,2, Yi Kuang1,2, Zhifan Wang3, Jin Zhu1, Yuanhua Wang3.
Abstract
Dirhodium(II) complex-catalyzed [3 + 2] reactions between N-arylaminocyclopropanes and alkyne derivatives are described. The cycloaddition products proved to be versatile synthetic intermediates. trans-Cyclic β-amino acids and derivatives thereof can be conveniently synthesized using this cycloaddition protocol.Entities:
Keywords: N-arylaminocyclopropanes; [3 + 2]; alkyne; cycloaddition; cyclopropanes; dirhodium catalysis
Year: 2019 PMID: 30873238 PMCID: PMC6404392 DOI: 10.3762/bjoc.15.48
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Applications of N-arylaminocyclopropanes.
Catalyst screening and optimization of reaction conditionsa.
| Entry | Conditions | Solvent | Yieldb (%) |
| 1 | no catalyst | DCM | NR |
| 2 | [Rh(CH2CH2)2Cl]2 | DCM | ND |
| 3 | [Rh(Cp*)Cl2]2 | DCM | 72 |
| 4 | Rh2(OAc)4 | DCM | 45 |
| 5 | Rh2(TFA)4 | DCM | 52 |
| 6 | Rh2(esp)2 | DCM | 68 |
| 7 | Rh2(cap)4 | DCM | 40 |
| 8 | Rh2(5 | DCM | 61 |
| 9c | Rh2(esp)2 | DCM | 39 |
| 10c | [Rh(Cp*)Cl2]2 | DCM | 44 |
| 11c | Rh2(5 | DCM | 58 |
| 12c | Rh2(5 | DCE | 67 |
| 13c | Rh2(5 | hexane | 59 |
| 14c | Rh2(5 | toluene | 59 |
| 15c | Rh2(5 | DME | 60 |
| 16c | Rh2(5 | DMF | 33 |
aReaction conditions: 1a (0.5 mmol, 0.2 M in degassed solvent), 2a (2.5 mmol), catalyst (1 mol %) under argon at room temperature for 24 h unless otherwise noted. bIsolated yield. c0.1 mol % of catalyst. esp = α,α,α’,α’-tetramethyl-1,3-benzenedipropionate, cap = caprolactamate, 5S,R-MenPY = (S)-(1R,2S,5R)-2-isopropyl-5-methylcyclohexyl 2-oxopyrrolidine-5-carboxylate, NR = no reaction, ND = not detected.
Substrate scope of N-arylaminocyclopropanesa.
| Entry | Substrate | Product | Yieldb | ||
| 1 | 59% | ||||
| 2 | 78% | ||||
| 3 | 91% | ||||
| 4 | 85% | ||||
| 5 | 36% (88% brsm) | ||||
| 6 | 67% | ||||
| 7 | 24% (52% brsm) | ||||
| 8 | 20% (67% brsm) | ||||
| 9 | 37% (65% brsm) | ||||
aReaction conditions: 1b–j (1 mmol, 0.2 M in degassed solvent), 2a (5 mmol), catalyst (0.1 mol %) at room temperature for 24 h unless otherwise noted. bIsolated yield; brsm = based on recovered starting material.
Substrate scope of alkyne derivativesa.
| Entry | Substrate | Product | Yieldb(%) | ||
| 1 | N.D. | N.R. | |||
| 2 | <10 | ||||
| 3 | 65 | ||||
| 4 | 64 | ||||
| 5 | 65 | ||||
| 6 | 64 | ||||
| 7 | 31 | ||||
| 8c | 45 (17:83)f | ||||
| 9 | 41 (30:70)f | ||||
| 10 | 44 | ||||
| 11c | 40 | ||||
aReaction conditions: 1a (1 mmol, 0.2 M in degassed solvent), 2b–l (5 mmol), catalyst (0.1 mol %) at room temperature for 24 h unless otherwise noted. bIsolated yield. cN-Arylaminocyclopropane 1d was used instead of 1a. dMajor isomer shown. eIsomer ratio 89:11. fDiastereoisomeric ratios (cis/trans) were determined by 1H NMR spectroscopy of the crude products.
Scheme 2Synthesis of trans-ethyl 2-aminocyclopentanecarboxylate.
Scheme 3Proposed mechanism.