| Literature DB >> 35539348 |
Hong Ji1, Li-Yang Wu1, Jiang-Hong Cai1, Guo-Rong Li1, Na-Na Gan1, Zhao-Hua Wang2.
Abstract
A highly efficient room-temperature borylation strategy of aryl chlorides is described. Utilizing Buchwald's second-generation preformed catalyst, boronate esters were obtained for a wide range of substrates in high yield. The method was also applied to Suzuki-Miyaura cross-coupling reaction in a one-pot two-step sequential manner, providing a facile and convenient access to the direct synthesis of biaryl compounds from aryl chlorides. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35539348 PMCID: PMC9079898 DOI: 10.1039/c8ra01381k
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Palladium-catalyzed borylation of 4-chlorotoluenea
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| Entry | Boron reagent | Catalyst | Ligand | Time (h) | Yield |
| 1 | B2pin2 | Pd2dba3 | XPhos | 10 | 0, 84 |
| 2 | H-Bpin | Pd2dba3 | XPhos | 10 | 0 |
| 3 | B2pin2 | PdCl2(dppf)2 | — | 10 | 0 |
| 4 | B2pin2 | Pd(OAc)2 | XPhos | 10 | 0, 72 |
| 5 | H-Bpin | Pd(OAc)2 | XPhos | 10 | 0 |
| 6 | B2pin2 | Pd(OAc)2 | SPhos | 48 | 38 |
| 7 | B2pin2 | XPhos-Pd-G2 | XPhos | 1.0 | 17 |
| 8 | H-Bpin | XPhos-Pd-G2 | XPhos | 1.0 | 11 |
Reaction conditions: 1a (1.0 equiv.), boron reagent (3.0 equiv.), KOAc (3.0 equiv.), dioxane (0.5 M), cat. [Pd]/ligand = 1 : 2, RT.
Isolated yield.
Sealed tube, 110 °C.
Et3N as solvent.
DMF as solvent.
Fig. 1Ligands and boron reagents for Pd-catalyzed borylation of aryl chlorides.
Reaction parameters optimization for borylation of 4-chlorotoluenea
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|---|---|---|---|
| Entry | Solvent | Base | Yield |
| 1 | Dioxane | KOAc | 17 |
| 2 | Toluene | KOAc | 38 |
| 3 | THF | KOAc | 24 |
| 4 | Et3N | — | Trace |
| 5 |
| KOAc | 19 |
| 6 | EtOH | KOAc | 82 |
| 7 | EtOH | K2CO3 | 72 |
| 8 | EtOH | Cs2CO3 | 51 |
| 9 | EtOH | CsOAc | 34 |
| 10 | EtOH | K3PO4 | 50 |
| 11 | EtOH | K3PO4·7H2O | 98 |
| 12 | EtOH | K3PO4·7H2O | 98 |
Reaction conditions: 1a (1.0 equiv.), B2pin2 (2.0 equiv.), XPhos-Pd-G2 (2 mol%), XPhos (4 mol%), base (3.0 equiv.), solvent (0.5 M), 30 min.
Isolated yield.
Et3N as solvent.
B2pin2 (1.2 equiv.), XPhos-Pd-G2 (0.5 mol%), XPhos (0.25 mol%).
XPhos-Pd-G2 (0.5 mol%) was used without XPhos.
Palladium-catalyzed borylation of aryl chlorides at room temperaturea
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|---|---|---|---|---|
| Entry | Ary chloride | Pd (mol%) | Time (h) | Yield |
| 1 |
| 0.5 | 0.5 | 92 |
| 2 |
| 0.5 | 2.0 | 96 |
| 3 |
| 0.5 | 1.0 | 74 |
| 4 |
| 0.5 | 1.0 | 84 |
| 5 |
| 0.5 | 1.0 | 72 |
| 6 |
| 0.5 | 4.0 | 83 |
| 7 |
| 1.0 | 8.0 | 85 |
| 8 |
| 1.0 | 6.0 | 82 |
| 9 |
| 0.5 | 1.0 | 93 |
| 10 |
| 1.0 | 1.5 | 63 |
| 11 |
| 1.0 | 3.0 | 67 |
| 12 |
| 0.5 | 0.5 | 90 |
| 13 |
| 0.5 | 0.5 | 88 |
Reaction conditions: 1 (1.0 equiv.), B2pin2 (1.2 equiv.), K3PO4·7H2O (3.0 equiv.), XPhos-Pd-G2 (0.5 mol%), XPhos (0.25 mol%), EtOH (0.5 M).
Isolated yield.
XPhos-Pd-G2 (1.0 mol%), XPhos (0.5 mol%).
Palladium-catalyzed synthesis of symmetrical biaryl compoundsa
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Reaction conditions: 1 (1.0 equiv.), B2pin2 (0.5 equiv.), K3PO4·7H2O (3.0 equiv.), XPhos-Pd-G2 (0.5 mol%), XPhos (0.5 mol%), EtOH (0.20 M). Isolated yield.
H2O (0.3 ml) added into the reaction mixture after 2 h.
Palladium-catalyzed one-pot two-step synthesis of unsymmetrical biaryl compoundsa
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Reaction conditions: (a) 1m (1.1 equiv.), XPhos-Pd-G2 (1.0 mol%), XPhos (1.0 mol%), B2pin2 (1.2 equiv.), K3PO4·7H2O (3.0 equiv.), EtOH (0.275 M), RT, 2 h; (b) second aryl chloride (1.0 equiv.),3.0 M aq. K3PO4·7H2O (3.0 equiv.), RT. Isolated yield based on 1m.
XPhos-Pd-G2 (1.5 mol%) and XPhos (1.5 mol%).
Comparison of forward-order and reverse-order strategies in synthesis of unsymmetrical biaryl compoundsa
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|---|---|---|---|---|---|
| Entry | Ar1–Cl | Ar2–Cl | Product | Forward yield | Reverse yield |
| 1 |
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| 87 | 98 |
| 2 |
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| 84 | 25 |
| 3 |
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| 65 | 93 |
| 4 |
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| 91 | 20 |
| 5 |
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| 77 | 42 |
| 6 |
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| 38 | 79 |
| 7 |
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| 35 | 85 |
General conditions: (a) first chloride (1.1 equiv.), XPhos-Pd-G2 (1.0 mol%), XPhos (1.0 mol%), B2pin2 (1.2 equiv.), K3PO4·7H2O (3.0 equiv.), EtOH (0.275 M), RT, 2 h; (b) second chloride (1.0 equiv.), 3.0 M aq. K3PO4·7H2O (3.0 equiv.), RT, 8 h.
Yield of isolated product.
15 h for the second step.
6 h for the second step.