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Pest Management Science | 2017

Synthesis and Biological Potency of Anilino‐Triazine Insecticides

Timothy C. Johnson; Annette Brown; Kristy Bryan; Katherine Guenthenspberger; Ricky Hunter; Timothy Martin; Noormohamed M. Niyaz; Gene F. Tisdell; Tony K. Trullinger

BACKGROUND An insecticide screening effort identified N-(4-bromophenyl)-4,6-bis(2,2,2-trifluoroethoxy)-1,3,5-triazine-2-amine as having weak potency against two lepidopteran species, Helicoverpa zea and Spodoptera exigua. A structure-activity relationship study about the trifluoroethoxy substituents and the aniline of this compound was carried out in an effort to improve insecticidal potency. RESULTS Initially, a series of analogs bearing various substituents on the aniline were prepared, and the insecticidal potency was evaluated against H. zea and S. exigua in greenhouse diet feeding assays. The results showed that electron-withdrawing substituents, such as Cl, Br and CF3 , were preferred over electron-donating substituents, such as methoxy, and that potency was significantly better when the substituent was in the para-position. Additional investigations showed that bis(anilino)trifluoroethoxytriazines were more potent. Replacement of the remaining trifluoroethyl group in the bis(anilino)triazine series with an alkyl amine lead to compounds of equal or superior efficacy. CONCLUSION The work presented showed that electron-withdrawing substituents in the para-position of the aniline ring of the initial hit delivered the best levels of insecticidal potency against the two insect species tested. Further investigations showed that potency could be improved by replacing one of the two trifluoroethoxy groups with additional 4-substituted aniline. This level of potency was maintained or further improved when the remaining trifluoroethoxy was replaced with a substituted amine.


Archive | 2014

Pesticidal compositions and processes related thereto

Maurice C. H. Yap; Ann M. Buysse; Daniel Knueppel; Yu Zhang; Negar Garizi; Noormohamed M. Niyaz; Christian T. Lowe; Ricky Hunter; Tony K. Trullinger; David A. Demeter; Dan Pernich; Carl Deamicis; Ronald Ross; Timothy C. Johnson


Archive | 2000

Fungicidal heterocyclic aromatic amides and their compositions, methods of use and preparation

Michael John Ricks; William H. Dent; Richard B. Rogers; Chenglin Yao; Bassam Nader; John L. Miesel; Gina Marie Fitzpatrick; Kevin G. Meyer; Noormohamed M. Niyaz; Irene Mae Morrison; Robert P. Gajewski


Archive | 2002

Derivatives of uk-2a

Kevin G. Meyer; Richard B. Rogers; Chenglin Yao; Noormohamed M. Niyaz; Butz Jennifer Lynn Adamski; Bassam Nader


Archive | 2002

Process to produce derivatives from uk-2a derivatives

Noormohamed M. Niyaz; Carl Deamicis; Richard B. Rogers; Kevin G. Meyer; William H. Dent; Peter Biagio Anzeveno


Archive | 2014

Processes for the preparation of pesticidal compounds

Qiang Yang; Beth Lorsbach; Gary A. Roth; Noormohamed M. Niyaz; Jeffrey Nissen; Ronald Ross; Gregory T. Whiteker; Carl Deamicis; Kaitlyn Gray; Yu Zhang


Archive | 2014

Pesticidal compositions and related methods

Yu Zhang; Asako Kubota; Noormohamed M. Niyaz; Thomas Barton; Tony K. Trullinger; Christian T. Lowe; Paul Renee Leplae; Ann M. Buysse; Martin J Walsh; Negar Garizi; Ricky Hunter; Daniel Knueppel


Archive | 2010

Insecticidal pyridine compounds

Noormohamed M. Niyaz; Francis E. Tisdell; Gerald B. Watson; James M. Renga; William C. Lo; Maurice C. H. Yap


Archive | 2002

Fungicidal 2-pyridyl alkyl amides and their compositions, methods of use and preparation

Michael John Ricks; Richard B. Rogers; William H. Dent; Chenglin Yao; Bassam Nader; Gina Marie Fitzpatrick; Noormohamed M. Niyaz; Robert P. Gajewski; John L. Miesel; Kevin G. Meyer; Irene Mae Morrison


Archive | 2002

Fungicidal mono-, bi-, and tri-cycloheteroalkyl amides and their compositions, methods of use and preparation

Michael John Ricks; William H. Dent; Richard B. Rogers; Chenglin Yao; Bassam Nader; John L. Miesel; Gina Marie Fitzpatrick; Kevin G. Meyer; Noormohamed M. Niyaz; Irene Mae Morrison; Robert P. Gajewski

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