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  1. Physical Organic Chemistry
  2. Stabilization of the pesticide Fenitrothion towardOandNnucleophiles in the presence of cyclodextrins
  3. Inclusion of the insecticide fenitrothion in dimethylated-β-cyclodextrin: unusual guest disorder in the solid state and efficient retardation of the hydrolysis rate of the complexed guest in alkaline solution
  4. Permethylated β-cyclodextrin/pesticide complexes: X-ray structures and thermogravimetric assessment of kinetic parameters for complex dissociation
  5. Effect of cyclodextrins on the reactivity of fenitrothion
  6. ChemInform Abstract: Mechanism of the Alkaline Hydrolysis of O-Ethyl S-(2,4,6-Trinitrophenyl) Thio- and Dithiocarbonates (I).
  7. ChemInform Abstract: Amines as Leaving Groups in Nucleophilic Aromatic Substitution Reactions. Part 5. Substitution vs. N-Oxide Formation in the Reaction of N-n-Butyl-2,6-dinitroaniline with Hydroxide Ions
  8. Reactivity of the Insecticide Fenitrothion toward O and N Nucleophiles
  9. Solid-state structures and thermal properties of inclusion complexes of the organophosphate insecticide fenitrothion with permethylated cyclodextrins
  10. Investigation of the inclusion of the herbicide metobromuron in native cyclodextrins by powder X-ray diffraction and isothermal titration calorimetry
  11. Comparative analysis of complexation of pesticides (fenitrothion, methylparathion, parathion) and their carboxylic ester analogues by β-cyclodextrin. Theoretical semiempirical calculations
  12. Reactivity of the insecticide chlorpyrifos-methyl toward hydroxyl and perhydroxyl ion. Effect of cyclodextrins
  13. Medium Effect on the Reaction ofN-Butyl-2,4,6-trinitroaniline with NaOH
  14. FromN-(dinitrophenyl) amino acids to benzimidazoleN-oxides. Synthesis, kinetics and mechanism
  15. Time evolution and competing pathways in photodegradation of trifluralin and three of its major degradation products
  16. A Simple Synthesis of Benzimidazole N-Oxides from 2-Nitroaniline Derivatives ? Scope and Limitations.
  17. A simple synthesis of benzimidazole N -oxides from 2-nitroaniline derivatives — Scope and limitations
  18. Effect of cyclodextrin on the hydrolysis of the pesticide fenitrothion [O,O-dimethylO-(3-methyl-4-nitrophenyl)phosphorothioate]
  19. Amines as leaving groups in nucleophilic aromatic substitution reactions. Part 4.1 σ-Adduct formation in the hydrolysis of 1-amino-2,4,6-trinitrobenzenes
  20. Mechanism of the alkaline hydrolysis of O-ethyl S-(2,4,6-trinitrophenyl) thio- and dithiocarbonates
  21. From N-n-butyl-2,6-dinitroaniline to a fused heterocyclic N-oxide
  22. X-ray structural and spectroscopic investigation of 1-piperidine-2,4-dinitrobenzene
  23. Amines as leaving groups in nucleophilic aromatic substitution reactions. III. Hydrolysis of 1-amino-2,4-dinitrobenzenes
  24. Structural investigation of 1-amino-2,4,6-trinitrobenzenes in the solid state and in solution
  25. Kinetic and equilibrium study of the interaction ofN-(1-Ethylpropyl)-3, 4-Dimethyl-2, 6-Dinitroaniline with hydroxide ion
  26. Amines as leaving groups in nucleophilic aromatic substitution reactions. II. Hydrolysis ofN-(2,4,6-trinitrophenyl)amines
  27. Imidazole as leaving group in aromatic nucleophilic substitution reactions