| Literature DB >> 22423293 |
Krzysztof M Borys1, Maciej D Korzyński, Zbigniew Ochal.
Abstract
A halogenmethylsulfonyl moiety is incorporated in numerous active herbicides and fungicides. The synthesis of tribromomethyl phenyl sulfone derivatives as novel potential pesticides is reported. The title sulfone was obtained by following three different synthetic routes, starting from 4-chlorothiophenol or 4-halogenphenyl methyl sulfone. Products of its subsequent nitration were subjected to the S(N)Ar reactions with ammonia, amines, hydrazines and phenolates to give 2-nitroaniline, 2-nitrophenylhydrazine and diphenyl ether derivatives. Reduction of the nitro group of 4-tribromomethylsulfonyl-2-nitroaniline yielded the corresponding o-phenylenediamine substrate for preparation of structurally varied benzimidazoles.Entities:
Keywords: 2-nitroaniline derivatives; SNAr reaction; pesticides; phenylhydrazones; tribromomethyl sulfone derivatives
Year: 2012 PMID: 22423293 PMCID: PMC3302088 DOI: 10.3762/bjoc.8.27
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Retrosynthetic analysis of the designed target molecules.
Scheme 2Synthetic routes for 4-chlorophenyl tribromomethyl sulfone (1).
Scheme 3Halogenation/nitration sequence for 4-halogenphenyl methyl sulfones 4 and 4'.
Scheme 4SNAr transformations of sulfone 6.
Derivatives of 2-nitroaniline, 2-nitrophenylhydrazine and diphenyl ether.
| product | substituent (R) | yielda (%) |
| NH2 | 93 | |
| NHNH2 | 94 | |
| NHCH3 | 95 | |
| NHC6H11 | 87 | |
| NHCH2CH2CH3 | 92 | |
| NHCH2CH(CH3)2 | 94 | |
| N(C2H5)2 | 94 | |
| N(CH2CH(CH3)2)2 | 92 | |
| 96 | ||
| 88 | ||
| 86 | ||
| 91 | ||
| 92 | ||
| 92 | ||
| 90 | ||
aIsolated yield.
Scheme 5Preparation of phenylhydrazones 8a–8l.
2-Nitro-4-tribromomethylsulfonylphenylhydrazones.
| compound | substituent (R) | yielda (%) |
| 96 | ||
| 87 | ||
| 89 | ||
| 93 | ||
| 90 | ||
| 92 | ||
| 85 | ||
| 89 | ||
| 91 | ||
| 88 | ||
| 92 | ||
| 94 | ||
aIsolated yield.
Scheme 6Products of the nitro group reduction of sulfone 7a.
Scheme 7Synthesis of benzimidazole derivatives 11a–11g.
5-Tribromomethylsulfonylbenzimidazole derivatives.
| product | substituent (R) | yielda (%) |
| CH3 | 86 | |
| CF3 | 93 | |
| CH2C6H5 | 57 | |
| 81 | ||
| 77 | ||
| C6H5 | 79 | |
| C6H4-4-Cl | 65 | |
| SH | 80 | |
| 92 | ||
| 76 | ||
aIsolated yield.
Scheme 8Preparation and further transformation of 2-mercaptobenzimidazole 11h.
Fungicidal activity of the active compoundsa.
| 100 μg/mL | 200 μg/mL | 1000 μg/mL | ||||
| 70 | 80 | 80 | 80 | 100 | 50 | |
| 80 | 80 | 60 | 100 | 100 | 55 | |
| 60 | 40 | 80 | 100 | 100 | 50 | |
| 50 | 80 | 80 | 70 | 90 | 35 | |
aThe results of biological evaluation are expressed as the values of percentage inhibition of colony growth of the fungi, derived from the following formula: I = 100 (C − T)/C, where I = percentage inhibition of colony growth of the fungi, C = zone of growth of the fungus colony in mm in the control, T = zone of growth of the fungus colony in mm in the examined sample. The first row of the table contains the names of the utilized fungal pathogens; the second row shows the examined concentration(s) of the compound in the sample.