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Progress in a Time of Change1,2,4-Triazolo[1,5-a]pyrimidine-2-sulfonanilide Herbicides: Influence of Alkyl,Haloalkyl, and Halogen Heterocyclic Substitution on In Vitro and In Vivo | |
Biological Activity1,2,4-Triazolo[1,5-a]pyrimidine-2-sulfonanilide Herbicides: Influence of Alkoxy | |
Heterocyclic Substitution on In Vitro and In Vivo Biological Activity and Soil | |
DecompositionN-(Substituted-2-fluorophenyl)- and N-(Substituted-2-trifluormethylphenyl)-1,2,4-triazolo -[1,5-a]pyrimidine-2-sulfonanilides:Synthesis and Herbicidal Activity | |
New Pyrazole Sulfonylureas: Synthesis and Herbicidal Activity | |
Synthesis and Quantitative Structure-Activity Relationships of | |
Pyridylsulfonylurea Herbicides | |
Novel N-Substituted Imidazolinones: Synthesis and Herbicidal Activity | |
Discovery of a New Class of Herbicides: Sulfonyl Carboxamides | |
Phenyl-Substituted Five-Membered-Ring Heterocycles as Bleaching Herbicides7-Phenyl-1,2,4-triazolo[1,5-a]pyrimidines and Related Heterocycles: A New Familyof Bleaching Herbicides | |
Diphenylpyridines: A New Class of Herbicides | |
Structure-Activity Relationships in 3-Alkyl- and 3-Aryl-5-isothiazolylureas:Pre- and Postemergence Herbicides with Two Possible Modes of Action | |
Design and Synthesis of 1-Aryl-4-substituted-1,4-dihydro-5H-tetrazol-5-ones: ANovel Pre- and Postemergence Class of Herbicides | |
Synthesis and Herbicidal Properties of Aryltriazolinones: A New Class of Pre-and Postemergence Herbicides | |
Novel Pryazole Phenyl Ether Herbidices | |
N-Substituted-2,6-(polyfluoromethyl)dihydropyridine-3,5- dicarboxylates:Synthesis and Herbicidal Activity5-Substituted-2,4-imidazolidinediones: Synthesis and Herbicidal Activity | |
Cyanoacrylate Inhibitors of Photosynthetic Electron Transport: Structural | |
Requirements for Inhibitor Potency and Herbicidal Activity | |
Synthesis and Gametocidal Activity of1-Aryl-5-(aminocarbonyl)-1H-pyrazole-4-carboxylic Acids | |
Discovery, Isolation, and Structure Elucidation of a Family of Structurally | |
Unique, Fermentation-Derived Tetracyclic Macrolides | |
New Series of Milbemycin Macrolides (LL-F28249) with Endectocidal, Insecticidal,and Acaricidal Activity: Synthetic Modification and Biological Activity | |
Regio- and Stereoselective Synthesis of 13b-Substituted-milbemycins, includingthe 13b-Alkyl-milbemycins | |
Highly Efficacious Non-Ester Pyrethroid Insecticides with Low Toxicity to Fish1,4-Diaryl-1-cyclopropylbutanes: Highly Efficacious Insecticides with Low Fish | |
Toxicity | |
Insecticidal Pyrroles: Discovery and Overview | |
Insecticidal Pyrroles: Arylpyrrolecarbonitriles Incorporating a Trifluoromethyl | |
Group | |
Insecticidal Pyrroles: Synthesis of bis-(Trifluoromethyl) Pyrroles via | |
Rearrangement of O-Vinyloximes | |
Insecticidal Dihydropyrazoles with Reduced Lipophilicity | |
N-Benzoyl-N-alkyl-2-aminothiazole Proinsecticides | |
Diphenylamines I: Synthesis and Structure-Activity Relationship Development of | |
Novel N-(Substituted Phenyl)-N-alkyl-2-(trifluoromethyl)-4,6-dinitrobenzenamines | |
Leading to a Potent Miticide(EL-462)Diphenylamines II: Synthesis and Miticidal Activity of 2-Alkyl-4,6-dinitro- and4-Alkyl-2,6-dinitrodiphenylamine Analogs and Derivatives | |
Synthesis and Reactivity of Cyclic Hydroxamic Acids: Resistance Factors in the | |
Gramineae | |
Nematicidal Activity of5-Substituted-2-S-(3,4,4-trifluoro-3-butenyl)-1,3,4-thiadiazoles | |
Fungicidal b-Methoxyacrylates: From Natural Products to Novel Synthetic | |
Agricultural Fungicides | |
Total Synthesis of Naturally Occurring 1,2-Dithiolo[4,3-b]pyrrolones and Related | |
Compounds | |
Phenylpyrroles, a New Class of Agricultural Fungicides Related to the Natural | |
Antibiotic Pyrrolnitrin | |
Synthesis of Fungicidal Phenylpyrroles | |
Design of Sterol Reductase Inhibitors: Insights into the Binding Conformation of | |
Tertiary Amine Fungicides | |
Mechanism of the Antifungal Action of (S)-2-Amino-4-oxo-5-hydroxypentanoic Acid,RI-331: Inhibition of Homoserine Dehydrogenase in Saccharomyces cerevisiae | |
A Novel Class of Benzamide Fungicides | |
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