| Literature DB >> 35425457 |
Qiong Yu1, Kun Yi Yu1, Cai Feng Xu1, Man-Kin Wong1,2.
Abstract
An efficient visible light photocatalytic strategy to synthesize thermodynamically less stable Z-arylvinyl halides (with up to >99/1 Z/E ratio and 86% yield) was developed. The reaction combined base-mediated halodecarboxylation of E-arylvinyl acids with N-halosuccinimide and visible light Ir-photocatalyzed isomerization of E-arylvinyl halides in a one pot sequential catalytic process. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 35425457 PMCID: PMC8981174 DOI: 10.1039/d1ra08753c
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1Photocatalytic synthesis of multisubstituted alkenes.
Optimization of the reaction conditions using quinoliziniums as photocatalysta
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| Entry | Photocatalyst (PC) | Additive | Yield |
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| 1 | 3a | — | 45 | 44/56 |
| 2 | 3a | 1 eq. K2CO3 | 88 | 0/100 |
| 3 | 3a | 1 eq. TBAI | 75 | 0/100 |
| 4 | 3a | 1 eq. CH3CO2H | 43 | 56/44 |
| 5 | 3a | 2 eq. CH3CO2H | 35 | 77/23 |
| 6 | 3a | 3 eq. CH3CO2H | 58 | 66/34 |
| 7 | 3a | 2 eq. PhCO2H | 21 | 99/1 |
| 8 | 3a | 0.3 eq. PhCO2H | 32 | 94/6 |
| 9 | 3b | 0.3 eq. PhCO2H | 29 | 86/14 |
| 10 | 3c | 0.3 eq. PhCO2H | 22 | 91/9 |
| 11 | 3d | 0.3 eq. PhCO2H | 38 | 84/16 |
| 12 | 3e | 0.3 eq. PhCO2H | 24 | 88/12 |
| 13 | 3f | 0.3 eq. PhCO2H | 33 | 94/6 |
| 14 | 3g | 0.3 eq. PhCO2H | 35 | 86/14 |
| 15 | 3h | 0.3 eq. PhCO2H | 49 | 69/31 |
| 16 | 3i | 0.3 eq. PhCO2H | 63 | 60/40 |
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Reaction conditions: treatment of E-1a (0.2 mmol), NBS (0.4 mmol) and photocatalyst (5 mol%) in 2 mL of CH3CN under N2 and blue LEDs light for 17 hours at room temperature.
Yield was determined by 1H NMR using dibromomethane as internal standard.
The Z/E ratio was determined by 1H NMR spectroscopy.
Optimization of the reaction conditionsa
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|---|---|---|---|---|
| Entry | Photocatalyst (PC) | Additive | Yield |
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| 1 | Ir(ppy)3 | 0.3 eq PhCO2H | 48 | 52/48 |
| 2 | Ir(ppy)3 | 0.3 eq PhCO2H | 0 | — |
| 3 | Ir(ppy)3 | — | 0 | — |
| 4 | Ir(ppy)3 | 0.3 eq. K2CO3 | 31 | 61/39 |
| 5 | Ir(ppy)3 | 2 eq. K2CO3 | 60 | 97/3 |
| 6 | Ir(ppy)3 | 2.5 eq. K2CO3 | 56 | 95/5 |
| 7 | Ir(ppy)3 | 3 eq. K2CO3 | 49 | 96/4 |
| 8 | Ir(ppy)3 | 2 eq. Na2CO3 | 57 | 95/5 |
| 9 | Ir(ppy)3 | 2 eq. Cs2CO3 | 54 | 94/6 |
| 10 | Ir(ppy)3 | 2 eq. K3PO4 | 64 | 89/11 |
| 11 | Ir(ppy)3 | 2 eq. | 38 | 92/8 |
| 12 | Ir(ppy)3 | 2 eq. DBU | 47 | 94/6 |
| 13 | Ir(ppy)3 | 2 eq. Et3N | 9 | 67/33 |
| 14 | Ir(Fppy)3 | 2 eq. K2CO3 | 56 | 89/11 |
| 15 | Ir(diFppy)3 | 2 eq. K2CO3 | 73 | 79/21 |
| 16 | Mes-Acr-BF4 | 2 eq. K2CO3 | 30 | 10/90 |
| 17 | Ru(bpy)3(PF6)2 | 2 eq. K2CO3 | 64 | 5/95 |
| 18 | Ru(bpy)3Cl2 | 2 eq. K2CO3 | 48 | 0/100 |
| 19 | Ir(ppy)3 | 2 eq. K2CO3 | 74 | 0/100 |
| 20 | — | 2 eq. K2CO3 | 54 | 4/96 |
Reaction conditions: treatment of E-1a (0.2 mmol), NBS (0.4 mmol) and photocatalyst (2 mol%) in 2 mL of MeOH under N2 and blue LEDs light for 17 hours at room temperature.
Yield was determined by 1H NMR using dibromomethane as internal standard.
The Z/E ratio was determined by 1H NMR spectroscopy.
The reaction solvent was CH3CN.
No light irradiation.
Scope of the visible light photocatalytic reactionsa
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Reactions were performed with 0.2 mmol substrate at room temperature in MeOH (2.0 mL) using 2 mol% fac-Ir(ppy)3 under 30 W blue LEDs irradiation. Z/E ratios were determined by 1H NMR spectroscopy. Isolated yields.
5.0 mmol scale.
5 mol% fac-Ir(ppy)3.
1 mol% fac-Ir(ppy)3.
Scheme 2Reaction progress monitoring of E-1c.
Scheme 3Pd-catalyzed coupling reactions of styrenyl bromide Z-2j.