Abstract
Novel heterocyclic enamine derivatives based on skeleton of neonicotinoids were designed and prepared by the substitution reaction between heterocyclic enamines with intermediates of neonicotinoids, which provides readily accessible neonicotinoid analogs for potential bioactivity assay.
We are thankful for financial support from the Science Foundation of Shanghai Institute of Technology (YJ2010-49), the Key and Innovation Project of Shanghai Educational Committee (No. 11ZZ180), and the Project of Local University Ability Building of Shanghai Scientific and Technological Committee (No. 11520502600).
References
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Articles in the same Issue
- Supplementary data
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- Design and synthesis of heterocyclic enamine derivatives based on skeleton of neonicotinoids
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- Iodine-catalyzed synthesis of 5-arylanthra[2,1-c][2,7]naphthyridine derivatives via three-component reaction
- One-pot synthesis of acenaphtho[1,2-b]pyrroles in the presence of supported ionic liquid catalyst
- Theoretical investigation on tautomerism and NBO analysis of 3-hydroxy-1,2,5-thiadiazole derivatives: solvent and substituent effects
Articles in the same Issue
- Supplementary data
- Masthead
- Masthead
- Preliminary Communications
- Synthesis and molecular structure of (Z)-1H-purin-6-ylideneaminooxysulfonic acid: a possible secondary metabolite of adenine
- Design and synthesis of heterocyclic enamine derivatives based on skeleton of neonicotinoids
- Research Articles
- Reductive amination of 6-acetylpteridine to 6-N-arylaminoethylpteridine
- Efficient synthesis of selected phthalazine derivatives
- Synthesis of novel fluorescent 1,3,5-trisubstituted triazine derivatives and photophysical property evaluation of fluorophores and their BSA conjugates
- Fast and efficient microwave synthetic methods for some new 2(1H)-pyridone arabinosides
- Simple and efficient synthesis of novel N-dichloroacetyl-3,4-dihydro-2H-1,4-benzoxazines
- Palladium-catalyzed cascade reactions of benzyl halides with N,N-diallyl-p-toluenesulfonamide
- Iodine-catalyzed synthesis of 5-arylanthra[2,1-c][2,7]naphthyridine derivatives via three-component reaction
- One-pot synthesis of acenaphtho[1,2-b]pyrroles in the presence of supported ionic liquid catalyst
- Theoretical investigation on tautomerism and NBO analysis of 3-hydroxy-1,2,5-thiadiazole derivatives: solvent and substituent effects