| Literature DB >> 21647321 |
Lian-Jun Liu1, Feijun Wang, Wenfeng Wang, Mei-Xin Zhao, Min Shi.
Abstract
Axially chiral mono(NHC)-Pd(IEntities:
Keywords: Heck–Mizoroki reaction; Suzuki–Miyaura reaction; chiral mono(N-heterocyclic carbene) complex; hydroamination
Year: 2011 PMID: 21647321 PMCID: PMC3107448 DOI: 10.3762/bjoc.7.64
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Monodentate NHCs with sterically hindered N-substituents.
Figure 2NHCs with axially chiral biaryl frameworks.
Scheme 1Synthesis of N-heterocyclic carbene precursor.
Scheme 2Synthesis of mono(NHC)–Pd(II) complex.
Figure 3ORTEP drawing of NHC–Pd(II) complex (S)-7a with thermal ellipsoids at the 30% probability level. Selected bond distances (Å) and angles (deg): Pd–C1 = 2.050(5), Pd–C25 = 2.154(7), Pd–C26 = 2.128(9), Pd–C27 = 2.168(8), Pd–I1 = 2.6404(7), N1–C1–Pd = 125.6(4), N2–C1–Pd = 128.8(4), C1–Pd–I1 = 99.52(13), C1–Pd–C25 = 98.3(3), C1–Pd–C26 = 132.3(5), C1–Pd–C27 = 163.7(4), I1–Pd–C25 = 161.9(3), I1–Pd–C26 = 126.5(5), I1–Pd–C27 = 95.9(3), C25–Pd–C27 = 66.0(4), C25–Pd–C26 = 37.5(4), C26–Pd–C27 = 34.8(4).
Scheme 3Synthesis of mono(NHC)–Au(I) complex.
Figure 4ORTEP drawing of NHC–Au(I) complex (S)-6a with thermal ellipsoids at the 30% probability level. Selected bond distances (Å) and angles (deg): Au1–C1 = 2.036(14), Au1–I1 = 2.5093(13), C1–Au1–I1 = 176.5(3), N1–C1–Au1 = 125.7(9), N2–C1–Au = 126.1(9).
Suzuki–Miyaura reaction catalyzed by NHC–Pd(II) complex 7a.
| Entry | R | R' | X | Product | Yield (%)b |
| 1 | 4-Me | H | Br | 81 | |
| 2 | 4-COMe | H | Br | 98 | |
| 3 | 2-NO2 | H | Br | 96 | |
| 4 | 2-MeO | H | Br | 89 | |
| 5 | 2-Me | H | Br | 80 | |
| 6 | 4-COMe | 4-Me | Br | 97 | |
| 7 | 4-MeO | 4-Me | Br | 81 | |
| 8 | 4-Me | 2-Cl | Br | 74 | |
| 9 | H | 4-Me | I | >99 | |
| 10 | H | 4-Me | Cl | <5 | |
aReaction conditions: 1 mmol aryl halide, 1.3 mmol arylboronic acid, 1.3 mmol t-BuOK, 0.01 mmol NHC–Pd(II) complex, 2.0 mL IPA.
bIsolated yields.
Heck–Mizoroki reaction catalyzed by NHC–Pd(II) complex 7a.
| Entry | R | X | Time (h) | Product | Yield (%)b |
| 1 | H | Br | 18 | 82 | |
| 2 | 4-Me | Br | 18 | 79 | |
| 3 | 4-MeO | Br | 18 | 80 | |
| 4 | 4-CHO | Br | 18 | 85 | |
| 5 | 2-Me | Br | 18 | 76 | |
| 6 | H | I | 18 | 97 | |
| 7 | H | Cl | 18 | <5 | |
aReaction conditions: 7 (1 mol % Pd), Na2CO3 (2.0 mmol), TBAB (0.1 mmol), aryl halide (1.0 mmol) and n-butyl acrylate (1.5 mmol) in DMA (3.0 mL) at 140 °C for 18 h.
bIsolated yield after silica gel column chromatography.
NHC–Au complex (S)-6a catalyzed asymmetric intramolecular hydroamination.
| Entry | Solvent | AgX | Time (h) | Yield (%)a | ee (%)b |
| 1 | THF | AgSbF6 | 36 | trace | —c |
| 2 | Toluene | AgSbF6 | 36 | trace | — |
| 3 | DCM | AgSbF6 | 36 | 53 | 10 |
| 4 | DCE | AgSbF6 | 36 | 43 | 7 |
| 5 | DCM | AgClO4 | 36 | 63 | 10 |
| 6 | DCM | AgOTf | 36 | 42 | 10 |
| 7 | DCM | AgOTs | 36 | —d | — |
| 8 | DCM | AgBF4 | 36 | 46 | 0 |
aIsolated yield.
bDetermined by chiral HPLC.
cnot determined.
dno reaction.
Scheme 4Synthesis of mono(NHC)–Au(I) complex (S)-6b.
Scheme 5Synthesis of mono(NHC)–Au(I) complex (S)-6c.
Scheme 6The application of catalysts (S)-6b and 6c in the intramolecular hydroamination reaction.