| Literature DB >> 30310567 |
Hairong Lyu1, Yangjian Quan1, Zuowei Xie1.
Abstract
A one-pot strategy for efficient and facile synthesis of C,B-substituted carborane-fused N-polyheterocycles is reported. A rhodium catalyzed cascade cyclization of carboranyl N-arylimines with vinyl ketones enables the effective construction of three new B-C and C-C bonds in one reaction. Both carboranyl B-H and aryl C-H bonds are sequentially activated, leading to a series of previously unavailable C,B-substituted carborane-fused cyclopenta[b]quinoline derivatives, for potential applications in pharmaceuticals and materials, in a step-economical manner. The successful isolation and structural identification of a key intermediate provide solid evidence for the reaction mechanism, involving a tandem sequence of regioselective B-H activation, alkene insertion, nucleophilic cyclization, C-H activation, nucleophilic cyclization, dehydration and oxidative aromatization.Entities:
Year: 2018 PMID: 30310567 PMCID: PMC6115682 DOI: 10.1039/c8sc01568f
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Synthesis of carborane-fused cyclopenta[b]quinoline.
Optimization of reaction conditions
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| Entry | Variations from the ‘standard’ conditions | Yield of |
| 1 | Without Cu(OPiv)2 | Trace |
| 2 | Cu(OAc)2 instead of Cu(OPiv)2 | 17 |
| 3 | Without MesCOOH | 68 |
| 4 | PivOH instead of MesCOOH | 74 |
| 5 | AgSbF6 (0.5 equiv.) | 53 |
| 6 | AgNTf2 instead of AgSbF6 | 9 |
| 7 | 80 °C instead of 90 °C | 34 |
| 8 | 100 °C instead of 90 °C | 74 |
| 9 | DCE instead of 1,4-DCB | Trace |
| 10 | Toluene instead of 1,4-DCB | — |
| 11 | [Ir] instead of [Rh] | Trace |
| 12 | [Ru] instead of [Rh] | 36 |
| 13 | [Rh] (2.5 mol%) | 70 |
| 14 | 2-Butenone (1.0 equiv.) | 33 |
| 15 | 2-Butenone (3.0 equiv.) | 62 |
| 16 | Cu(OPiv)2 (1.0 equiv.) | 49 |
| 17 | Cu(OPiv)2 (2.0 equiv.) | 71 |
| 18 | Under air | 39 |
Reaction conditions: 1a (0.05 mmol) and 2a (0.25 mmol) in 1.5 mL of solvent under argon in a closed flask; 1,4-DCB = 1,4-dichlorobutane; Cu(OPiv)2 = copper pivalate; AgSbF6 = silver hexafluoroantimonate(V); MesCOOH = 2,4,6-trimethylbenzoic acid; PivOH = pivalic acid; AgNTf2 = silver bis(trifluoromethanesulfonyl)imide; DCE = 1,2-dichloroethane; [Ir] = [Cp*IrCl2]2; [Ru] = [Ru(p-cymene)Cl2]2. Yield determined by 1H NMR spectroscopy using dibromomethane as an internal standard.
Synthesis of C,B-substituted o-carborane-fused N-polyheterocycles
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Reactions were conducted at a 0.10 mmol scale in 2 mL of 1,4-dichlorobutane under argon in a closed flask (isolated yield).
0.5 equiv. of AgSbF6 was used and the reaction time was 10 h.
Scheme 2Transformations of 3m. (a) Carbazole (1.2 equiv.), Pd2(dba)3 (5 mol%), P(Bu)3 (8 mol%), LiOBu (4.5 equiv.), o-xylene, 140 °C, 24 h; (b) phenylacetylene (1.2 equiv.), PdCl2(PPh3)2 (5 mol%), CuI (10 mol%), Et3N (5.0 equiv.), DMF, 60 °C, 16 h; (c) B2pin2 (1.1 equiv.), Pd(dppf)Cl2 (10 mol%), KOAc (3.0 equiv.), toluene, 90 °C, 18 h; (d) styrene (1.2 equiv.), PdCl2(PPh3)2 (10 mol%), K2CO3 (4.0 equiv.), toluene, 130 °C, 12 h; (e) NiCl2 (1.0 equiv.), PPh3 (4.0 equiv.), Zn (1.0 equiv.), DMF, 50 °C, 12 h.
Scheme 3Mechanistic study.
Scheme 4Proposed reaction mechanism.