| Literature DB >> 36091902 |
Stefanie Plöger1, Christian Mück-Lichtenfeld1, Constantin G Daniliuc1, Armido Studer1.
Abstract
An atom-economic thermal α,β-difunctionalization of various styrenes with readily prepared azodioxy compounds is reported. Mechanistic studies reveal that the starting azodioxy compounds can thermally be cleaved to the corresponding C-nitroso compounds, which under these thermal conditions further homolyze to generate reactive C-radicals along with the persistent NO radical. In the presence of a styrene, C-radical addition with subsequent nitrosylation followed by tautomerization is occurring, resulting in an overall styrene β-alkylation-α-oximation reaction. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 36091902 PMCID: PMC9400666 DOI: 10.1039/d2sc03860a
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.969
Scheme 1Use of C-nitroso compounds as bifunctional reagents for radical alkene 1,2-difunctionalization.
Thermal reaction of 1a with 2a – optimization studies
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| Entry | Solvent | Temp. [°C] | Yield |
| 1 | DMF | r.t. | n.d. |
| 2 | DMF | 100 | 53 |
| 3 | DMF | 60 | 60 |
| 4 | DMSO | 60 | 66 |
| 5 | Acetone | 60 | n.d. |
| 6 | MeOH | 60 | 32 |
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| 8 | DMSO | 60 | 44 |
Reaction conditions: 1a (0.1 mmol), 2b (0.6 mmol), solvent (2 mL), Ar, 1a was added in three portions every 30 min.
Yield of isolated product.
1a was added in six portions every 30 min.
Reaction was conducted open to air.
Scheme 2Variation of the radical acceptor 2. 40 equiv. of the alkene 2u were used.
Scheme 3Variation of the azodioxy compound. The reaction was conducted at 60 °C. The reaction was conducted at 120 °C. The reaction was conducted at 80 °C.
Scheme 4Gram scale preparation of 3c and 3ad′ and follow-up chemistry. Reaction conditions: (a) Zn (5.0 equiv.), AcOH (10 equiv.), Ac2O, 68 °C, 18 h; (b) NaCNBH3 (3.2 equiv.), AcOH, 18 h; (c) CH2O, HCl (3 mol L−1), EtOH, reflux, 3 h; (d) DMF, 150 °C, 1.5 h; (e) Co2(CO)8 (1.0 equiv.), NEt3 (1.0 equiv.), Et2O, 15 min; (f) Co2(CO)8 (1.0 equiv.), NEt3 (1.0 equiv.), Et2O, 15 min, then CH2O, HCl (3 mol L−1), EtOH, reflux, 3 h; (g) NH4OAc (7.6 equiv.), EtOH, reflux, 4 h.
Scheme 5Mechanistic experiments and complementary reactivity.