| Literature DB >> 34163684 |
Xiaoxi Chen1,2, Shuai Fan1, Meng Zhang1, Yuzhen Gao1, Shangda Li1, Gang Li1,2.
Abstract
Direct para-selective C-H functionalization of arenes remains a daunting challenge and is still significantly restricted to a few scaffolds. Herein, we report an unprecedented pyridine-based para-directing template (DT) assisted, Pd-catalyzed para-C-H alkenylation of three classes of arenes, i.e. phenylpropanoic acids, 2-phenyl benzoic acids and benzyl alcohols, with a series of alkenes including perfluoroalkenes. Notably, the pyridine-based para-DT could be easily synthesized and readily recycled under mild conditions. These results may find application in rapid construction of para-substituted arenes and stimulate the exploration of novel methods for para-C-H functionalization of arenes. This journal is © The Royal Society of Chemistry.Entities:
Year: 2021 PMID: 34163684 PMCID: PMC8179498 DOI: 10.1039/d0sc07042d
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Para-C–H activation beyond steric & electronic control.
Evaluation of pyridine-based para-DTa
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Reaction conditions: 1a (0.1 mmol), 2a (2 equiv.), Pd(OAc)2 (0.01 mmol), 3-(trifluoromethyl)pyridin-2-ol (L1) (0.02 mmol), AgOAc (0.3 mmol), HFIP (1.0 mL), 80 °C, 12 h. Ratio = p : others; Ts: tosyl; Bs: phenylsulfonyl.
Optimization of reaction conditions.a,b
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| Entry | Oxidant (equiv.) | Additive (equiv.) | Yield (%) ( |
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| 2 | AgOAc (3) | — | 70/11 : 1 |
| 3 | AgOAc (3) | — | 76/12 : 1 |
| 4 | Cu(TFA)2 (3) | — | 21/7 : 1 |
| 5 | CuCl2 (3) | — | — |
| 6 | CuI (3) | — | 11/5 : 1 |
| 7 | Cu(OAc)2 (3) | — | 40/8 : 1 |
| 8 | Cu(OAc)2 (0.5) | AcOH (2.0) | 68/12 : 1 |
| 9 | Cu(OAc)2 (0.5) | AcOH (2.0) | 72/12 : 1 |
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| 11 | Cu(OAc)2 (0.5) | AcOH (2.0) | 53/12 : 1 |
| 12 | Cu(OAc)2 (0.5) | AcOH (1.0) | 76/12 : 1 |
| 13 | Cu(OAc)2 (0.5) | AcOH (5.0) | 73/12 : 1 |
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1a8 (0.1 mmol), Pd(OAc)2 (0.01 mmol), 2a (2 equiv.), L1 (0.02 mmol), oxidant, additive, HFIP (1.5 mL), 90 °C, air (1 atm), 12 h.
Yield was determined by 1H NMR with CH2Br2 as internal standard; products ratios were determined from crude 1H NMR, and products of others were mainly m- and o-isomers.
L2 (20 mol%).
L3 (20 mol%).
18 h.
2a (3 equiv.), L4 (20 mol%), 60 °C, 48 h.
70 °C.
75 °C.
80 °C.
Isolated yield of desired product in parentheses.
Scope of phenylpropionic acids and alkenesa
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Reaction conditions A: 1 (0.1 mmol), Pd(OAc)2 (10 mol%), 2 (3 equiv.), Cu(OAc)2 (50 mol%), L4 (20 mol%), AcOH (2 equiv.), air (1 atm), HFIP (1.5 mL), 75 °C, 48 h.
Conditions B: Oxidant: AgOAc (3 equiv.), ligand: L1 (20 mol%), 24 h; no AcOH added.
2 (2 equiv.), 90 °C.
O2 (1 atm).
2 (3 equiv.), HFIP (1.0 mL), 100 °C.
3ha1 (51%, terminal alkene), 3ha2 (22%, internal alkene). Ratio = p : others. Isolated yield of pure desired para-isomer was reported herein.
Reaction with perfluoroalkenesa
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Reaction conditions: 1 (0.1 mmol), Pd(OAc)2 (10 mol%), 2 (3 equiv.), Cu(OAc)2 (50 mol%), L4 (20 mol%), AcOH (2 equiv.), HFIP (1.5 mL), air (1 atm), 70 °C, 48 h.
AgOAc (3 equiv.), L1 (20 mol%), 80 °C, 24 h; no AcOH added. Ratio = p : others. Isolated yield of pure desired para-isomer was reported herein.
Scope of 2-phenyl benzoic acids and benzyl alcoholsa
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Reaction conditions: 5 (0.1 mmol), 2 (3 equiv.), Pd(OAc)2 (10 mol%), L1 (20 mol%), AgOAc (3 equiv.), HFIP (1.0 mL), 100 °C, 24 h.
2 (2 equiv.), HFIP (1.5 mL), 90 °C. Ratio = p : others. Isolated yield of pure desired para-isomer was reported herein.
Scheme 2Synthetic Potential Investigation.