AI Article Synopsis

  • A new acid hydrazide derivative was created and converted into various N-heterocycles, including pyridazinone and oxadiazole, by reacting with specific carbon electrophiles.
  • The structures of these compounds were confirmed through analytical and spectroscopic methods.
  • The resulting N-heterocycles showed significant insecticidal activity, particularly against lab strains of larvae, with some compounds being more effective than the commonly used insecticide imidacloprid, suggesting their potential as alternatives in pest control.

Article Abstract

An acid hydrazide derivative was synthesized and transformed into a variety of valuable N-heterocycles such as pyridazinone, oxadiazole, triazolopyridazinone, and triazole derivatives reactions with certain carbon electrophiles such as 4-methoxybenzaldehyde, indole-3-carbaldehyde, pentan-2,4-dione, and carbon disulfide. The chemical structures of all prepared compounds were verified their analytical and spectroscopic data. The insecticidal activity of the N-heterocycles was evaluated against field and lab strains of the third larval instar of . All tested compounds exhibited higher larvicidal activity against the lab strains compared to the field strains, with dissimilar ratios. The obtained results demonstrate that the high toxicity achieved by oxadiazole followed the order of furanone, pyridazinone and hydrazide, with lower LC values of the hydrazone and -acetylpyridazinone derivatives compared to that of imidacloprid. Interestingly, these compounds are promising agents for insect pest control, especially since they are insoluble in water and can overcome the disadvantages of neonicotinoid applications in pest management programs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9069532PMC
http://dx.doi.org/10.1039/d2ra02388aDOI Listing

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