| Literature DB >> 25685314 |
Xin Cui1, Xue Xu1, Li-Mei Jin1, Lukasz Wojtas1, X Peter Zhang1.
Abstract
Co(II)-based metalloradical catalysis has been, for the first time, successfully applied for asymmetric intramolecular C-H alkylation of acceptor/acceptor-substituted diazo reagents. Through the design and synthesis of a new D2-symmetric chiral amidoporphyrin as the supporting ligand, the Co(II)-based metalloradical system, which operates at room temperature, is capable of 1,5-C-H alkylation of α-methoxycarbonyl-α-diazosulfones with a broad range of electronic properties, providing the 5-membered sulfolane derivatives in high yields with excellent diastereoselectivity and enantioselectivity. In addition to complete chemoselectivity toward allylic and allenic C-H bonds, the Co(II)-based metalloradical catalysis for asymmetric C-H alkylation features a remarkable degree of functional group tolerance.Entities:
Year: 2015 PMID: 25685314 PMCID: PMC4324598 DOI: 10.1039/C4SC02610A
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1C–H functionalization by a) electrophilic metallocarbene insertion and b) radical C–H alkylation via MRC.
Effect of the porphyrin ligand on the stereoselective metalloradical C–H alkylation of α-methoxycarbonyl-α-diazosulfone 1a catalyzed by [Co(D 2-Por*)]
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| Entry | Catalyst (loading) | Yield | dr | ee |
| 1 | [Co(TPP)] (120 mol%) | NR | — | — |
| 2 | [Co( | 83 | 95 : 5 | –24 |
| 3 | [Co( | 63 | 96 : 4 | 91 |
| 4 | [Co( | 92 | 96 : 4 | 92 |
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Reactions were carried out at room temperature for 72 h in a one-time fashion without slow addition of the diazo reagent using [Co(Por)] under N2.
Isolated yields.
The trans : cis diastereomeric ratio determined by 1H-NMR.
Enantiomeric excess determined by chiral HPLC.
No reaction.
For clarity, the other two meso-groups of the porphyrin are omitted.
[Co(P3)]-catalyzed asymmetric C–H alkylation of α-methoxycarbonyl-α-diazosulfone compounds
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Syntheses of catalysts and diazo compounds are summarized in ESI;[15] reactions were carried out at room temperature for 72 h using [Co(P3)] under N2; isolated yields; the trans : cis diastereomeric ratios were determined by 1H-NMR; enantiomeric excesses were determined by chiral HPLC.
[2S,3R] absolute configuration determined by anomalous-dispersion effects in X-ray diffraction measurements on a crystal.
5 mol% catalyst used.
PhF used as solvent.
Catalyst-controlled olefin isomerizations to probe the radical mechanism of Co(ii)-catalyzed C–H alkylation
| Entry | Diazo | [Co( | Yield |
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| 1 |
| [Co( | 94 | 95 : 5 |
| 2 | [Co( | 96 | 89 : 11 | |
| 3 | [Co( | 96 | 82 : 18 | |
| 4 |
| [Co( | 92 | 18 : 82 |
| 5 | [Co( | 94 | 49 : 51 | |
| 6 | [Co( | 95 | 77 : 23 | |
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Reactions were carried out in benzene with 2 mol % catalyst at 40 °C for 72 h under N2.
Isolated yields.
The E–Z ratio determined by 1H-NMR.
Diastereoselective transformations of sulfolanes with construction of quaternary carbon stereocenters
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| Entry | Electrophile | Product | Yield (%) | dr | ee (%) |
| 1 | Selectfluor |
| 92 | 96 : 4 | 94 |
| 2 | Selectfluor |
| 89 | 96 : 4 | 84 |
| 3 | NCS |
| 92 | 97 : 3 | 93 |
| 4 | MeI |
| 91 | 8 : 92 | 93 |
| 5 | Ethyl acrylate |
| 60 | 4 : 96 | 93 |
Compound 2 was treated with 1.2 equiv. of NaH in THF at room temperature, followed by the addition of 1.1 equiv. of electrophile and the subsequent stirring of the reaction mixture for 12 h; isolated yields; the trans : cis diastereomeric ratios were determined by 1H-NMR; enantiomeric excesses were determined by chiral HPLC.
THF/DMF (2 : 1) used as solvent.
[2R,3R] absolute configuration determined by anomalous-dispersion effects in X-ray diffraction measurements on a crystal.
The reaction was stirred for 3 h.