41377-38-2Relevant academic research and scientific papers
New palladium(II) hydrazone complexes: Synthesis, structure and biological evaluation
Ayyannan, Ganesan,Mohanraj, Maruthachalam,Raja, Gunasekaran,Bhuvanesh, Nanjan,Nandhakumar, Raju,Jayabalakrishnan, Chinnasamy
, p. 1 - 13 (2016)
Two new palladium(II) complexes of 4-hydoxy-benzoic acid (5-bromo-2-hydroxy-benzylidene)-hydrazide (H2L) (1) with triphenylphosphine and triphenylarsine as coligand have been synthesized and characterized by the aid of various spectral techniqu
Synthesis and biological activity of hydrazones of o- and p-hydroxybenzoic acids. Spatial structure of 5-Bromo-2-hydroxybenzylidene-4-hydroxybenzohydrazide
Nurkenov,Satpaeva, Zh. B.,Schepetkin,Khlebnikov,Turdybekov,Seilkhanov,Fazylov
, p. 2299 - 2306 (2017/11/24)
A series of hydrazones based on hydrazides of o- and p-hydroxybenzoic acids have been prepared. N-(5-Bromo-2-hydroxybenzylidene)-4-hydroxybenzohydrazide has been studied by X-ray diffraction analysis; its molecule forms hydrogen bond with a solvating ethanol molecule. Biological activity of the synthesized hydrazones towards cathepsin Е and(or) elastase of human neutrophils has been determined.
Synthesis and antifungal activity of substituted salicylaldehyde hydrazones, hydrazides and sulfohydrazides
Backes, Gregory L.,Neumann, Donna M.,Jursic, Branko S.
, p. 4629 - 4636 (2014/11/08)
Efficient synthetic procedures for the preparation of acid hydrazines and hydrazides were developed by converting the corresponding carboxylic acid into the methyl ester catalyzed by Amberlyst-15, followed by a reaction with hydrazine monohydrate. Sulfohydrazides were prepared from the corresponding sulfonyl chlorides and hydrazine monohydrate. Both of these group of compounds were condensed with substituted salicylaldehydes using gradient concentration methods that generated a large library of hydrazone, hydrazide and sulfohydrazide analogs. Antifungal activity of the prepared analogs showed that salicylaldehyde hydrazones and hydrazides are potent inhibitors of fungal growth with little to no mammalian cell toxicity, making these analogs promising new targets for future therapeutic development.
