| Literature DB >> 30393531 |
Jialin Ming1, Qi Shi1, Tamio Hayashi1.
Abstract
The reaction of arylstannanes ArSnR3 with unfunctionalised alkynes was found to proceed in the presence of a rhodium catalyst and a catalytic amount of zinc chloride to give ortho-alkenylarylstannanes with high selectivity in high yields. The catalytic cycle is very unique, consisting of three transmetalation steps, from Sn to Rh, Rh to Zn, and Zn to Sn, in addition to arylrhodation of alkyne followed by 1,4-migration of Rh from 2-arylalkenyl carbon to ortho-alkenylaryl carbon.Entities:
Year: 2018 PMID: 30393531 PMCID: PMC6182567 DOI: 10.1039/c8sc02459f
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Arylstannylation of alkynes and 1,4-migration.
Rhodium-catalysed phenylstannylation of 4-octyne (2a) with PhSnBu3 (1a)
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| Entry | Rh catalyst | Additive (equiv. to | Yield |
| 1 | Rh/binap | ZnCl2 (1.0) | 85 |
| 2 | Rh/binap | ZnCl2 (2.0) | 89 |
| 3 | Rh/binap | ZnCl2 (0.50) | 73 |
| 4 | Rh/binap | ZnCl2 (0.25) | 71 |
| 5 | Rh/binap | ZnCl2 (0.10) | 27 |
| 6 | Rh/binap | — | 0 |
| 7 | Rh/binap | ZnCl2 (1.0) | 75 |
| 8 | Rh/binap | ZnBr2 (1.0) | 43 |
| 9 | Rh/binap | ZnI2 (1.0) | 18 |
| 10 | Rh/binap | CuCl (1.0) | <3 |
| 11 | Rh/segphos | ZnCl2 (1.0) | 73 |
| 12 | Rh/biphep | ZnCl2 (1.0) | 71 |
| 13 | Rh/dppf | ZnCl2 (1.0) | 16 |
| 14 | Rh/dppe | ZnCl2 (1.0) | 0 |
| 15 | Rh/dppp | ZnCl2 (1.0) | 0 |
| 16 | Rh/xantphos | ZnCl2 (1.0) | 0 |
| 17 | Rh/PPh3 | ZnCl2 (1.0) | <3 |
| 18 | Rh/cod | ZnCl2 (1.0) | 0 |
| 19 | Ir/binap | ZnCl2 (1.0) | 0 |
| 20 | Co/xantphos | ZnCl2 (1.0) | 7 |
Reaction conditions: 4-octyne (2a) (0.20 mmol), PhSnBu3 (1a) (0.40 mmol) and ZnCl2 (0.20 mmol) in dioxane (1.0 mL) at 130 °C (bath temp.) for 16 h.
Rh catalyst (5 mol% of Rh) was generated in situ from [RhCl(coe)2]2 (10 μmol of Rh) and bisphosphine (11 μmol).
Isolated yield.
At 100 °C.
RhCl(PPh3)3 (10 μmol).
[RhCl(cod)]2 (10 μmol of Rh).
[IrCl(coe)2]2 (10 μmol of Ir) + binap (11 μmol).
CoCl2(xantphos) (10 μmol).
Rhodium-catalysed arylstannylation of 4-octyne (2a) with ArSnR31
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| Entry | ArSnR3 | L on Rh | Yield |
| 1 | PhSnBu3 ( | Binap | 85 ( |
| 2 | PhSnMe3 ( | Binap | 77 ( |
| 3 | PhSnPr3 ( | Binap | 89 ( |
| 4 | PhSnOct3 ( | Binap | 78 ( |
| 5 | 4-MeC6H4SnBu3 ( | Binap | 87 ( |
| 6 | 4-PhC6H4SnBu3 ( | Binap | 91 ( |
| 7 | 4-Me3SiC6H4SnBu3 ( | Binap | 83 ( |
| 8 | 4-CF3OC6H4SnBu3 ( | Binap | 83 ( |
| 9 | 4-MeOC6H4SnBu3 ( | Binap | 65 ( |
| 10 | 4-FC6H4SnBu3 ( | Binap | 77 ( |
| 11 | 4-ClC6H4SnBu3 ( | Binap | 73 ( |
| 12 | 4-ClC6H4SnBu3 ( | Segphos | 84 ( |
| 13 | 4-BrC6H4SnBu3 ( | Binap | 47 ( |
| 14 | 4-BrC6H4SnBu3 ( | Segphos | 78 ( |
| 15 | 4-NCC6H4SnBu3 ( | Binap | 51 ( |
| 16 | 4-NCC6H4SnBu3 ( | Segphos | 67 ( |
| 17 | 4-MeOOCC6H4SnBu3 ( | Binap | 61 ( |
| 18 | 4-MeOOCC6H4SnBu3 ( | Segphos | 82 ( |
| 19 | 4-CF3C6H4SnBu3 ( | Segphos | 69 ( |
| 20 | 3-MeC6H4SnBu3 ( | Binap | 77 ( |
| 21 | 3-Me3SiC6H4SnBu3 ( | Binap | 84 ( |
| 22 | 3-CF3C6H4SnBu3 ( | Binap | 67 ( |
| 23 | 2-NaphthylSnBu3 ( | Binap | 83 ( |
| 24 | 2-MeC6H4SnBu3 ( | Binap | <3 ( |
Reaction conditions: 4-octyne (2a) (0.20 mmol), ArSnR31 (0.40 mmol), ZnCl2 (0.20 mmol) and Rh catalyst (5 mol% of Rh) in dioxane (1.0 mL) at 130 °C (bath temp.) for 16 h.
Rh catalyst (5 mol% of Rh) was generated in situ from [RhCl(coe)2]2 (10 μmol of Rh) and binap or segphos (11 μmol).
Isolated yield.
In THF at 90 °C.
Regioselective 1,4-shift giving the products 3 shown below.
Rhodium-catalysed arylstannylation of alkynes 2 with PhSnBu3 (1a)
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Reaction conditions: alkyne 2 (0.20 mmol), PhSnBu31a (0.40 mmol), ZnCl2 (0.20 mmol) and Rh catalyst (5 mol% of Rh), generated in situ from [RhCl(coe)2]2 (10 μmol of Rh) and binap (11 μmol), in dioxane (1.0 mL) at 130 °C (bath temp.) for 16 h. The structures of main regioisomers are shown for the products from unsymmetrically substituted alkynes.
Scheme 2A catalytic cycle proposed for migratory arylstannylation of alkynes catalysed by Rh complex and ZnCl2.
Scheme 3Reactions to support the catalytic cycle.
Scheme 4Transformation of ortho-alkenylarylstannane 3aa. (a) (CF3CO)2O, D2O. (b) I2, CH2Cl2. (c) Selectfluor, AgOTf, acetone. (d) 4-IC6H4COOMe, PdCl2(PPh3)2 (10 mol%), CuI, DMF. (e) 2-Cyclohexenone, [RhCl(cod)]2 (5 mol% Rh), KOH, dioxane/H2O.