| Literature DB >> 26877817 |
Hans Sterckx1, Johan De Houwer1, Carl Mensch1, Wouter Herrebout1, Kourosch Abbaspour Tehrani1, Bert U W Maes1.
Abstract
The methylene group of various substituted 2- and 4-benzylpyridines, benzyldiazines and benzyl(iso)quinolines was successfully oxidized to the corresponding benzylic ketones using a copper or iron catalyst and molecular oxygen as the stoichiometric oxidant. Application of the protocol in API synthesis is exemplified by the alternative synthesis of a precursor to the antimalarial drug Mefloquine. The oxidation method can also be used to prepare metabolites of APIs which is illustrated for the natural product papaverine. ICP-MS analysis of the purified reaction products revealed that the base metal impurity was well below the regulatory limit.Entities:
Keywords: base metal; benzylic; catalyzed; molecular oxygen; oxygenation
Year: 2016 PMID: 26877817 PMCID: PMC4734388 DOI: 10.3762/bjoc.12.16
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Iron-catalyzed aerobic oxidation of phenyl-substituted 4-benzylpyridines (1).a
| Entry | Substrate | R | Product | Yield (%)b |
| 1 | H | 70 | ||
| 2 | NH2 | 55 | ||
| 3 | SMe | 56 | ||
| 4 | OMe | 67 | ||
| 5 | Me | 79 | ||
| 6 | I | 77 | ||
| 7 | Br | 85 | ||
| 8 | Cl | 66 | ||
| 9 | F | 76 | ||
| 10 | CO2Et | 61 | ||
| 11 | CN | 79 | ||
| 12 | NO2 | 60 | ||
aReactions were performed on a 0.5 mmol scale in 1 mL of solvent using 1 atmosphere of O2 (balloon). bIsolated yields.
Iron and copper-catalyzed aerobic oxidation of pyridine-substituted 2-benzylpyridines (3).a
| Entry | Catalyst | Substrate | R | Product | Yield | Yield |
| 1 | FeCl2·4H2O | 5-CN | 19 | 67 | ||
| 2 | CuI | 5-CN | 18 | 66 | ||
| 3 | CuI | 5-CNc | 0 | 83 | ||
| 4 | FeCl2·4H2O | 5-Me | 9 | 73 | ||
| 5 | CuI | 5-Me | 9 | 82 | ||
| 6 | CuI | 5-Mec | 0 | 72 | ||
| 7 | FeCl2·4H2O | 5-OMe | 65 | 15 | ||
| 8 | CuI | 5-OMe | 66 | 15 | ||
| 9 | CuI | 5-OMed,e | 0 | 65 | ||
| 10 | FeCl2·4H2O | 5-CO2Me | 0 | 69 | ||
| 11 | CuI | 5-CO2Me | 0 | 62 | ||
| 12 | FeCl2·4H2O | 5-NHCOMe | 0 | 64 | ||
| 13 | CuI | 5-NHCOMe | 27 | 56 | ||
| 14 | CuI | 5-NHCOMec | 0 | 91 | ||
| 15 | FeCl2·4H2O | 4-Cl | 0 | 85 | ||
| 16 | CuI | 4-Cl | 8 | 88 | ||
| 17 | FeCl2·4H2O | 3-Cl | 73 | 23 | ||
| 18 | CuI | 3-Cl | 71 | 22 | ||
| 19 | CuI | 3-Cld,e | 0 | 87 | ||
| 20 | FeCl2·4H2O | 5-Cl | 70 | 20 | ||
| 21 | CuI | 5-Cl | 69 | 15 | ||
| 22 | CuI | 5-Cld,e | 0 | 92 | ||
| 23 | FeCl2·4H2O | 6-Cl | 90 | 0 | ||
| 24 | CuI | 6-Cl | 91 | 0 | ||
| 25 | CuI | 6-Cle, f | 0 | 59 | ||
aReactions were performed on a 0.5 mmol scale in 1 mL of solvent using 1 atmosphere of O2 (balloon). bIsolated yields. c48 h. dAcOH (3 equiv). e130 °C. fTFA (3 equiv).
Figure 1Hydrogen–deuterium exchange through acid-catalyzed imine–enamine tautomerization of 3h (0.5 M) and 16 (0.5 M) using AcOH-d4 (0.5 M) or TFA-d1 (0.5 M). 1H NMR spectroscopy was used to quantify the monodeuterated species.
Scheme 1Benzylic oxygenation of benzoannulated azines and diazines (5).
Scheme 2Classical (top) and new formal (bottom) synthesis of Mefloquine.
Scheme 3Iron-catalyzed aerobic oxidation of papaverine (15).
The influence of the purification method on the amount of Fe impurities in papaveraldine (15) after oxidation.
| Entry | Purification method | Fe impurity in |
| 1 | Extractiona + column chromatographyb | 54 |
| 2 | Extractiona | 1097 |
| 3 | Extractiona + recrystallizationc | 300 |
aWashing subsequently with sat. aq NaHCO3 and brine, extraction with dichloromethane. bSilica flash cartridge applying a heptane/ethyl acetate gradient. cRecrystallization from a 2 M HCl solution.
An extended solvent screening for the base metal-catalyzed aerobic oxidation reaction.a
| Entry | Solventb | Yield | Yield |
| 1 | DMSOd | 0 | 87 |
| 2 | anisolee | 0 | 85 |
| 3 | 0 | 89 | |
| 4 | 1,4-dioxanef | 2 | 85 |
| 5 | toluened | 18 | 67 |
| 6 | CPMEd | 5 | 80 |
| 7 | 5 | 73 | |
aReactions were performed on a 5 mmol scale in 10 mL of solvent using 1 atmosphere of O2 (balloon). bClassification of solvents as provided in [44]. cIsolated yields. dProblematic. eRecommended. fHazardous.
Chemoselectivity obtained by selection of catalyst and solvent.a
| Entry | Substrate | Catalyst | Solvent | Yield | Yield |
| 1 | CuI | DMSO | 0 | 61 | |
| 2 | FeCl2·4H2O | DMSO | 57 | 0 | |
| 3 | CuI | 78c | 0 | ||
| 4 | CuI | DMSO | 0 | 62 | |
| 5 | FeCl2·4H2O | DMSO | 85 | 0 | |
| 6 | CuI | 64 | 0 | ||
aReactions were performed on a 0.5 mmol scale in 1 mL of solvent using 1 atmosphere of O2 (balloon). bIsolated yields. c48 h. dReported in our communication, see [25].