| Literature DB >> 29997805 |
N Mace Weldy1, A G Schafer1, C P Owens1, C J Herting1, A Varela-Alvarez2, S Chen2, Z Niemeyer3, D G Musaev2, M S Sigman3, H M L Davies1, S B Blakey1.
Abstract
The intermolecular enantioselective C-H functionalization with acceptor-only metallocarbenes is reported using a new family of Ir(iii)-bis(imidazolinyl)phenyl catalysts, developed based on the interplay of experimental and computational insights. The reaction is tolerant of a variety of diazoacetate precursors and is found to be heavily influenced by the steric and electronic properties of the substrate. Phthalan and dihydrofuran derivatives are functionalized in good yields and excellent enantioselectivities.Entities:
Year: 2016 PMID: 29997805 PMCID: PMC6005272 DOI: 10.1039/c6sc00190d
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Comparison of metallocarbene classes.
Fig. 2Calculated pro-R and pro-S transition states of ethyl diazoacetate insertion into tetrahydrofuran (top) and phthalan (bottom) with Ir(iii)-phebox 1.
Scheme 1Ir(iii)-phebox 1 catalyzed enantioselective insertion of ethyl diazoacetate into phthalan.
Scheme 2Ir(iii)-bis(imidazolinyl)phenyl (phebim) complex synthesisa.
Ir(iii)-phebim optimization for C–H insertion of ethyl diazoacetate into phthalan
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| Entry | Catalyst | Yield | er |
| 1 |
| 85 | 88 : 12 |
| 2 |
| 26 | 89 : 11 |
| 3 |
| 70 | 90 : 10 |
| 4 |
| 73 | 90 : 10 |
| 5 |
| 83 | 88 : 12 |
| 6 |
| 95 | 95 : 5 |
| 7 |
| 54 | 13 : 87 |
| 8 |
| 81 | 92 : 8 |
| 9 |
| 83 | 90 : 10 |
| 10 |
| 80 | 95 : 5 |
| 11 |
| 36 | 86 : 14 |
General conditions: 0.29 M solution of ethyl diazoacetate in PhCF3 was added over 5 h to a mixture of catalyst, phthalan (4 equiv.), and 4 Å MS in PhCF3 at –10 °C.
Isolated yields.
Determined by chiral HPLC.
Catalyst 11 is a member of the opposite enantio-series.
Fig. 3Linear regression modeling of Ir(iii)-phebim R1-substitution.
Diazoacetate scope for Ir(iii)-phebim catalyzed enantioselective C–H insertion into phthalan
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| Entry | R | Catalyst | Yield | er |
| 1 | Me |
| 72 | 92 : 8 |
| 2 | Me |
| 69 | 94 : 6 |
| 3 | CH2CCl3 |
| 84 | 94 : 6 |
| 4 | CH2CCl3 |
| 71 | 95 : 5 |
| 5 | CH2CH2Si(CH3)3 |
| 62 | 93 : 7 |
| 6 | CH2CH2Si(CH3)3 |
| 67 | 94 : 6 |
| 7 | Ph |
| 65 | 91 : 9 |
| 8 | Ph |
| 68 | 93 : 7 |
| 9 | 4-OMe-Ph |
| 57 | 91 : 9 |
| 10 | 4-OMe-Ph |
| 70 | 92 : 8 |
| 11 | 4-CF3-Ph |
| 78 | 90 : 10 |
| 12 | 4-CF3-Ph |
| 69 | 92 : 8 |
General conditions: 0.29 M solution of ethyl diazoacetate in PhCF3 was added over 5 h to a mixture of catalyst, phthalan (4 equiv.), and 4 Å MS in PhCF3 at –10 °C.
Isolated yields.
Determined by chiral HPLC.
0.5 mol% catalyst loading.
Substrate scope for Ir(iii)-phebim 14 catalyzed enantioselective C–H insertion with ethyl diazoacetate ,
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General conditions: 0.29 M solution of ethyl diazoacetate in PhCF3 was added over 5 h to a mixture of catalyst, substrate (4 equiv.), and 4 Å MS in PhCF3 at –10 °C.
Isolated yields are based on EDA.
The 2,6-regioisomer is also observed in an additional 19% yield and 94 : 6 er.
The 2,6-regioisomer is also observed in an additional 10% yield.
Product was isolated as a 4 : 1 mixture of the 2,5 (major) and 2,4 (minor) regioisomers.
0.5 mol% catalyst loading.
Scheme 3Ir(iii)-phebim 14 catalyzed kinetic resolution of rac-2-Me-phthalan with ethyl diazoacetate.