Phenylhydrazine Hydrochloride

2018 ◽  
Vol 2018 ◽  
pp. 1-7 ◽  
Author(s):  
Trong Duc Le ◽  
Ngoc Nam Pham ◽  
Tien Cong Nguyen

N-(4-Substituted phenyl)acetamides, which were prepared from acetic anhydride and p-substituted anilines, were utilized as precursors for reactions to Vilsmeier-Haack reagent to form 6-substituted-2-chloroquinoline-3-carbaldehydes 3a–c. Meanwhile, a similar reagent was applied to 1-[1-(4-substituted phenyl)ethylidene]-2-phenylhydrazines as substrates, which were synthesized from phenylhydrazine hydrochloride and p-substituted acetophenones, and 1,3-diarylpyrazole-4-carbaldehydes 3d–f were observed as a result. Reactions between the aldehydes 3a–f and 7-chloro-4-hydrazinylquinoline 2, obtained from reaction of 4,7-dichloroquinoline 1 and hydrazine hydrate, formed six new hydrazone compounds, namely, 4-{2-[(6-substituted-2-chloroquinolin-3-yl)methylidene]hydrazinyl}-7-chloroquinolines 4a–c and 4-(2-{[3-(4-substituted phenyl)-1-phenyl-1H-pyrazol-4-yl]methylene}hydrazinyl)-7-chloroquinolines 4d–f. The chemical structures of all synthesized compounds were elucidated by the analysis of IR, 1H, 13C-NMR, and HRMS spectral data. Additionally, all of the synthesized hydrazones were evaluated in terms of cytotoxic activity against four strains of bacteria and four strains of fungus at several concentrations of substrates. As a result, three of them, 4a–c, possess the good ability as growth inhibitor of Bacillus subtilis and Aspergillus niger at the concentration of 25 μg/mL and 50 μg/mL, respectively, while compound 4e only shows a cytotoxic activity against Aspergillus niger at the concentration of 25 μg/mL.


2012 ◽  
Vol 450-451 ◽  
pp. 223-227 ◽  
Author(s):  
Hui Qun Yu ◽  
You Bin Mo ◽  
Yan Fang Liao ◽  
Hai Zhou ◽  
Zhi Peng He

The new process of 1-(3,4-dichloropheny)-3-methyl-pyrazolone-5-one (34DCPMP) synthesis had been discovered, which using 3,4-dichloro phenylhydrazine hydrochloride(DCPH) and ethyl acetoacetate as the raw material , The product was obtained by the route during cyclization in aqueous medium. The structure of products was confirmed by 1HNMR, 13CNMR and IR. The effects of factors on the yield of products were investigated. It was found that the yield of 34DCPMP can reach 98.7% under the optimal reaction condition of n(34DCPH):n(ethyl acetoacetate) with 1:1.1, n(34DCPH):n(Na2SO3) with 1.3:1 at 80°C, and pH 7.5 for 3h. The chromatographic purity can be higher than 98.2%.


1988 ◽  
Vol 66 (3) ◽  
pp. 729-736 ◽  
Author(s):  
A. H. Houston ◽  
A. Murad ◽  
J. D. Gray

Immersion of goldfish, Carassius auratus, in 1 mg∙L−1 phenylhydrazine hydrochloride at 5 °C for 48 h led to reductions of 90–95% in hemoglobin and hematocrit within 10–14 days. Under similar conditions, 96-h exposures prompted heavy mortality. Fewer mortalities occurred after 24-h exposure periods; however, only modest reductions in O2-carrying capacity were seen. All higher concentration (2, 5, 10, 50 mg∙L−1) and temperature (10, 15, 20 °C) combinations led to complete mortality within 12–96 h regardless of exposure period (24, 48, 96 h). Exposure to phenylhydrazine hydrochloride caused decreases in hemoglobin and hematocrit, changes in the abundances of specific hemoglobin isomorphs, and the transient appearance of novel hemoglobin mobilities as well as evidence of osmo- and iono-regulatory dysfunction. Slow warming to 20 °C prompted red cell proliferation and hemoglobin synthesis and restoration of typical hemoglobin isomorph abundances. Incidence of transfer stresses was monitored by reference to differential leucocyte counts. Transfer led to lymphopenia and thrombopenia with neutrophilia and eosinophilia. Warming was accompanied by increases in lymphocyte and thrombocyte counts and reductions in those of monocytes and all granulocytes.


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