| Literature DB >> 27340457 |
Mamoru Tobisu1, Takuya Igarashi2, Naoto Chatani2.
Abstract
Catalytic C-H borylation of arenes has been widely used in organic synthesis because it allows the introduction of a versatile boron functionality directly onto simple, unfunctionalized arenes. We report herein the use of diisopropylaminoborane as a boron source in C-H borylation of arenes. An iridium(I) complex with 1,3-dicyclohexylimidazol-2-ylidene is found to efficiently catalyze the borylation of arenes and heteroarenes. The resulting aminoborylated products can be converted to the corresponding boronic acid derivatives simply by treatment with suitable diols or diamines.Entities:
Keywords: C–H borylation; N-heterocyclic carbene; boronic acid; iridium
Year: 2016 PMID: 27340457 PMCID: PMC4901929 DOI: 10.3762/bjoc.12.65
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Catalytic C–H borylation of arenes and related reported boron sources.
Effect of the ligand on the Ir-catalyzed borylation of 2 with 1g.a
| Entry | Ligand | Base | Temperature [°C] | NMR yieldb [%] | 2-Isomer/3-Isomer |
| 1 | dtbpy | none | 140 | trace | – |
| 2 | PPh3 | none | 140 | 21 | 57/43 |
| 3 | PCy3 | none | 140 | 3 | >99/1 |
| 4 | dppe | none | 140 | 2 | >99/1 |
| 5 | xantphos | none | 140 | 18 | 56/44 |
| 6 | Xphos | none | 140 | 19 | 71/29 |
| 7 | IMes·HCl | NaO | 140 | 5 | >99/1 |
| 8 | IPr·HCl | NaO | 140 | 3 | >99/1 |
| 9 | ICy·HCl | NaO | 140 | 33 | 88/12 |
| 10 | I | NaO | 140 | 0 | – |
| 11 | ICy·HCl | NaO | 110 | 58 | 95/5 |
| 12 | ICy·HCl | NaO | 110 | 72 (65)c | 99/1 |
aReaction conditions: 2 (0.50 mmol), 1g (1.0 mmol), [Ir(OMe)(cod)]2 (0.050 mmol), ligand (0.10 mmol), NaOt-Bu (0.20 mmol) in methylcyclohexane (1.0 mL) at 140 °C for 15 h. After treatment with pinacol (2.0 mmol), the borylated product was converted to the corresponding pinacolate. bThe yield refers to a combined NMR yield of 2- and 3-borylated products. cIsolated yield.
Scope of the heteroarene substrates.a
| Entry | Heteroarene | Product | Isolated yield (NMR yield) [%] |
| 1 | 48 (51) | ||
| 2 | 75 (82) | ||
| 3 | 66 (66) | ||
| 4 | 50 (55)b | ||
| 5 | 51 (58) | ||
| 6 | 94 (>99) | ||
| 7 | 91 (99) | ||
| 8 | 65 (87) | ||
| 9 | 0 | ||
| 10 | 71 (91) | ||
| 11 | 96 (>99) | ||
| 12 | 91 (>99) | ||
| 13 | 68 (92) | ||
aReaction conditions: heteroarene (0.50 mmol), 1g (1.0 mmol), [Ir(OMe)(cod)]2 (0.050 mmol), ICy·HCl (0.10 mmol), NaOt-Bu (0.20 mmol) in methylcyclohexane (1.0 mL) at 110 °C for 4 h. After treatment with pinacol (2.0 mmol), the borylated product was converted to the corresponding pinacolate. In cases where NMR yield is modest, the recovered starting heteroarene can account for the material balance, unless otherwise noted. bDebrominative borylation also occurred with a yield of 6%. cRun using 1.0 mL of N-methylpyrrole instead of methylcyclohexane.
Scope of the arene substrates.a
| Entry | Arene | Product | Isolated yield [%] | Ratio of |
| 1 | 48 | – | ||
| 2 | 42 | 0/64/36 | ||
| 3 | 35 | 0/60/40 | ||
| 4 | 49 | 0/76/24 | ||
| 5 | 31 | – | ||
| 6b | 50 | – | ||
aReaction conditions: arene (1.0 mL), 1g (0.50 mmol), [Ir(OMe)(cod)]2 (0.050 mmol), ICy·HCl (0.10 mmol), NaOt-Bu (0.20 mmol) at 110 °C for 15 h. After treatment with pinacol (2.0 mmol), the borylated product was converted to the corresponding pinacolate. bNaphthalene (3.0 mmol) was used in methylcyclohexane (1.0 mL).
Scheme 2Scalability and derivatization.