| Literature DB >> 27340478 |
Daria Yu Dzhons1, Andrei V Budruev1.
Abstract
The base-mediated photochemical cyclization of 2-azidobenzoic acids with the formation of 2,1-benzisoxazole-3(1H)-ones is reported. The optimization and scope of this cyclization reaction is discussed. It is shown that an essential step of the ring closure of 2-azidobenzoic acids is the formation and photolysis of 2-azidobenzoate anions.Entities:
Keywords: 1,5-electrocyclization; 2,1-benzisoxazolones; aryl azides; azepinones; nitrenes; photochemical cyclization
Year: 2016 PMID: 27340478 PMCID: PMC4902054 DOI: 10.3762/bjoc.12.86
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Selected examples of biologically active, fused 2,1-isoxazole derivatives.
Scheme 1Photochemical cyclization of substituted 2-azidobenzoic acids and possible reaction mechanism [34–59].
Optimization of conditions for the synthesis of substituted 2,1-benzisoxazole-3(1H)-ones.a
| Entry | Base (equiv) | Solvent | Yield ( | Yield ( | |
| 1 | – | 1,4-dioxane | – | – | 60 |
| 2 | – | EtOH | 38% | 1% | 60 |
| 3 | K2CO3 (0.5) | EtOH | 63% | – | 60 |
| 4 | K2CO3 (1) | EtOH | 75% | – | 60 |
| 5 | K2CO3 (1) | iPrOH | 75% | – | 60 |
| 6 | K2CO3 (5) | 1,4-dioxane/water 1:1 (v/v) | 43% | 8% | 60 |
| 7 | K2CO3 (3) | EtOH | 75% | – | 60 |
| 8 | Na2CO3 (0.5) | EtOH | 65% | – | 60 |
| 9 | Na2CO3 (1) | EtOH | 73% | – | 60 |
| 10 | NaHCO3 (0.5) | EtOH | 70% | – | 60 |
| 11 | NaHCO3 (1) | EtOH | 70% | – | 60 |
| 12 | KOH (1) | EtOH | 60% | – | 60 |
| 13 | NaOH (1) | Water | 30% | 12% | 60 |
| – | 60 | ||||
| 15 | NaOAc (1) | 1,4-dioxane/water 1:1 (v/v) | 63% | 20% | 60 |
aReaction conditions: 1a (0.78 mmol), solvent (15.0 mL); UV light (2 × 15 W Hg low-pressure lamp (254 nm), UV intensity was approximately 7 mW/cm2). bYields were determined by HPLC analysis using an external standard. cIrradiation time: the degree of conversion of 1a was 100%.
Substrate scope for the heterocyclization of 2-azidobenzoic acid.a
| Entry | R1 | R2 | Yield ( | |
| 1 ( | H | H | 75% ( | 60 |
| 2 ( | Cl | Cl | 92% ( | 60 |
| 3 ( | Br | H | 68% ( | 60 |
| 4 ( | Br | Br | 62% ( | 60 |
| 5 ( | I | H | 51% ( | 60 |
| 6 ( | Tre | H | 39% ( | 60 |
aReaction conditions: 1 (0.78 mmol), NaOAc (1 equiv), EtOH 96% (15.0 mL); UV light (2 × 15 W Hg low-pressure lamp (254 nm), UV intensity was approximately 7 mW/cm2). bYield of the isolated product. cIrradiation time: the degree of conversion of 1a–f was 100%. dFor the optimal conditions for synthesis of 2e see Table 4, entry 10. eTr – triphenylmethyl group (trityl group).
Optimization of conditions for the synthesis of 5-iodo-2,1-benzisoxazole-3(1H)-one (2e).a
| Entry | Base (equiv) | Solvent | Yield ( | |
| 1 | – | 1,4-dioxane/water 1:1 (v/v) | 6% | 60 |
| 2 | – | EtOH | 12% | 140 |
| 3 | NaOAc (1) | EtOH | 16% | 60 |
| 4 | NaOAc (1) | EtOH | 10% | 160 |
| 5 | NaOAc (1) | 1,4-dioxane/water 1:1 (v/v) | 5% | 60 |
| 6 | NaOAc (1.4) | EtOH | 14% | 60 |
| 7 | NaOAc (1.2) | EtOH | 13% | 90 |
| 8 | KOH (2.8) | EtOH | 30% | 90 |
| 9 | KOH (2.8) | EtOH | 18% | 110 |
| 11 | KOH (10) | EtOH | 34% | 90 |
aReaction conditions: 1e (0.78 mmol), solvent (15.0 mL); UV light (2 ×15 W Hg low-pressure lamp (254 nm), UV intensity was approximately 7 mW/cm2). bYields determined by HPLC analysis using an external standard. cIrradiation time: the degree of conversion of 1e was 100%.
Scope for photo-induced heterocyclization of 2-azidobenzoic acids in 1,4-dioxane/water mixture in the presence of potassium carbonate.a
| Entry | R1 | R2 | Yield ( | Yield ( | Yield ( | |
| 1 ( | H | H | 25% ( | 20% ( | – ( | 90 |
| 2 ( | Cl | Cl | 92% ( | – ( | – ( | 60 |
| 3 ( | Br | H | 34% ( | 18% ( | 10% ( | 180 |
| 4 ( | Br | Br | 62% ( | – ( | 4% ( | 60 |
| 5 ( | I | H | 5% ( | – ( | – ( | 120 |
| 6 ( | Tr | H | 40 % ( | – ( | – ( | 60 |
aReaction conditions: 1 (0.78 mmol), K2CO3 (1 equiv), 1,4-dioxane/water 1:1 (v/v) (15.0 mL); UV light (2 × 15 W Hg low-pressure lamp (254 nm), UV intensity was approximately 7 mW/cm2). bYields determined by HPLC analysis using an external standard. cIrradiation time: the degree of conversion of 1a–f was 100%.
Scheme 2Proposed reaction mechanism of the base-mediated photochemical cyclization of 2-azidobenzoic acids.