| Literature DB >> 28451192 |
Luis Bering1,2, Andrey P Antonchick1,2.
Abstract
A transition-metal-free cis-dihydroxylation of saturated hydrocarbons under ambient reaction conditions has been developed. The described approach allows a direct and selective synthesis of vicinal diols. The new reaction thereby proceeds via radical iodination and a sequence of oxidation steps. A broad scope of one-pot dual C(sp3)-H bond functionalization for the selective synthesis of vicinal syn-diols was demonstrated.Entities:
Year: 2016 PMID: 28451192 PMCID: PMC5298187 DOI: 10.1039/c6sc03055f
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Direct C(sp3)–H bond oxidation of alkanes.
Scheme 2Proposal for the vicinal dihydroxylation.
Optimization of reaction conditions
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| Entry | Oxidant (equiv.) | ArI or ArI( | Solvent | Yield | d.r. |
| 1 | AcO2H (16.5) | PIDA | AcOH | 72 | 5.3 : 1 |
| 2 | AcO2H (16.5) | PIDA | HCO2H | 32 | 7 : 1 |
| 3 | AcO2H (16.5) | PIDA | HFIP | 18 | 1.5 : 1 |
| 4 | AcO2H (16.5) | PIDA | CH3CN | 16 | 1.5 : 1 |
| 5 | AcO2H (16.5) | PIDA | CH2Cl2 | 20 | 1.5 : 1 |
| 6 | AcO2H (16.5) | PIDA | w/o | 17 | 4.3 : 1 |
| 7 | H2O2 (16.5) | PIDA | AcOH | n.d. | — |
| 8 | TBHP (16.5) | PIDA | AcOH | n.d. | — |
| 9 |
| PIDA | AcOH | n.d. | — |
| 10 | Na2S2O8 (16.5) | PIDA | AcOH | Traces | — |
| 11 | AcO2H (12.5) | PIFA | AcOH | 53 | 5 : 1 |
| 12 | AcO2H (12.5) | DIBA | AcOH | 97 | 5 : 1 |
| 13 | AcO2H (12.5) | 4-MeC6H4I | AcOH | 99 | 6 : 1 |
| 14 | AcO2H (12.5) | 4-FC6H4I | AcOH | 79 | 6.3 : 1 |
| 15 | AcO2H (12.5) | 2-MeC6H4I | AcOH | 53 | 5 : 1 |
| 16 | AcO2H (12.5) | IBA | AcOH | 8 | 10 : 1 |
| 17 | AcO2H (12.5) | 4-MeC6H4I | AcOH | 99 | 6.5 : 1 |
| 18 | AcO2H (12.5) | 4-MeC6H4I | AcOH | 86 | 6 : 1 |
| 19 | AcO2H (12.5) | 4-MeC6H4I | AcOH | 8 | n.c. |
Reaction conditions: (1) ArI or ArI(iii) (0.6 mmol, 1 equiv.), oxidant (see table), cyclohexane (12.5 equiv.), I2 (0.8 equiv.), NaN3 (2.5 equiv.), AcOH (0.1 M), rt, 24 h; (2) LiOH (2 equiv.), MeOH (0.2 M), rt.
Yields are given for isolated products after column chromatography. Calculated based on ArI or ArI(iii).
Diastereomeric ratio (d.r.) according to 1H-NMR.
8.5 equiv.
6.25 equiv. of cyclohexane.
1 equiv. of cyclohexane. Abbreviations: n.d. = not detected, w/o = without, HFIP = hexafluoroisopropanol, PIFA = phenyliodine bis(trifluoroacetate), DIBA = 2,2′-diiodo-4,4′,6,6′-tetra-methylbiphenyl, IBA = 2-iodobenzoic acid, n.c. = not calculated.
Scope of the vicinal dual C(sp3)–H bond hydroxylation of various saturated hydrocarbons
| Entry | Substrate | Products | r.r. | Yield |
| 1 |
|
| — | 99 |
| 2 |
|
| — | 86 |
| 3 |
|
| — | 85 |
| 4 |
|
| — | 37 |
| 5 |
|
| 21 : 1 : 7 | 90 (68 |
| 6 |
|
| 18.5 : 1 : 5 | 91 (73 |
| 7 |
|
| >20 : 1 | 86 |
| 8 |
|
| 6.5 : 1.5 : 1 | 68 |
| 9 |
|
| 5.5 : 2 : 1 | 73 |
| 10 |
|
| 7.7 : 1 | 55 |
| 11 |
|
| 8 : 1 | 20 |
Reaction conditions: (1) alkane (8.5 equiv.), 4-MeC6H4I (0.3 mmol, 1 equiv.), I2 (0.8 equiv.), NaN3 (2.5 equiv.) and AcO2H (12.5 equiv.) in AcOH (0.1 M), rt, 24 h; (2) LiOH (2 equiv.), MeOH (0.1 M), rt.
Diastereomeric ratio (d.r.) according to 1H-NMR. Major isomer is shown.
Regioisomeric ratio (r.r.) according to 1H-NMR.
Yields are given for isolated products. Calculated based on 4-MeC6H4I.
Scaled to 0.9 mmol of 4-MeC6H4I.
3.5 equiv. of NaN3.
BzCl (2.5 equiv.) and DMAP (5 mol%) in DCM/Py (0.45 M).
Yield of isolated regioisomers 14a and 14b.
Yield of isolated regioisomers 16a and 16b.
Scheme 3Plausible reaction mechanism.
Scheme 4Dihydroxylation of iodoalkanes. Reaction conditions: a iodoalkane (1 equiv., 0.5 mmol), 4-MeC6H4I (0.6 equiv.), AcO2H (7.5 equiv.) in AcOH (0.3 M), rt, 24 h; b Ac2O (3 equiv.), DMAP (5 mol%) in DCM/Py (0.45 M); c LiOH (2 equiv.), MeOH (0.1 M), rt.