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1.
Mater Sci Eng C Mater Biol Appl ; 49: 861-868, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25687018

ABSTRACT

(Z)-2-(2-methyl benzylidene)-1-(2,4-dinitrophenyl) hydrazine (L) was used as an active component of PVC membrane electrode (PME), coated graphite electrode (CGE) and coated silver wire electrode (CWE) for sensing Al(3+) ion. The electrodes exhibited linear Nernstian responses to Al(3+) ion in the concentration range of 1.0×10(-6) to 1.0×10(-1)M (for PME, LOD=8.8×10(-7)M), 5.5×10(-7) to 2.0×10(-1)M (for CWE, LOD=3.3×10(-7)M) and 1.5×10(-7) to 1.0×10(-1)M (for CGE, LOD=9.2×10(-8)M). The best performances were observed with the membranes having the composition of L:PVC:NPOE:NaTPB in the ratio of 5:35:57:3 (w/w; mg). The electrodes have a response time of 6s and an applicable pH range of 3.5-9.1. The sensors have a lifetime of about 15weeks and exhibited excellent selectivity over a number of mono-, bi-, and tri-valent cations including alkali, alkaline earth metal, heavy and transition metal ions. Analytical utility of the proposed sensor has been further tested by using it as an indicator electrode in the potentiometric titration of Al(3+) with EDTA. The electrode was also successfully applied for the determination of Al(3+) ion in real and pharmaceutical samples.


Subject(s)
Aluminum/chemistry , Cations/chemistry , Hydrazines/chemistry , Potentiometry/instrumentation , Edetic Acid/chemistry , Electrodes , Graphite/chemistry , Hydrogen-Ion Concentration , Ion-Selective Electrodes , Metals, Alkaline Earth/chemistry , Metals, Heavy/chemistry , Silver/chemistry
2.
Article in English | MEDLINE | ID: mdl-25615675

ABSTRACT

A new enhancing fluorescent chemosensor was introduced for selective and sensitive determination of nickel ions based on 2-(1-H-benzo[d]imidazol-2yl)-N-phenyl hydrazine carbothioamide (L). L has an intrinsic fluorescent emission which enhances in presence of nickel ions in CH3CN/H2O (70:30, v/v) solution. The fluorescence enhancement of L is attributed to a 1:1 complex formation between L and Ni2+ ion which has been used for selective detection of Ni2+ ion. At the optimum conditions, the fluorescence intensity of L at 352 nm enhances linearly by the concentration of nickel ion from 1.6×10(-5) to 1.6×10(-7) M and detection limit of 7.9×10(-8) M. The new fluorescent probe exhibited high selectivity to Ni2+ ion over the other common mono, di-and trivalent cations.


Subject(s)
Fluorescent Dyes/chemistry , Nickel/analysis , Phenylhydrazines/chemistry , Thioamides/chemistry , Cations, Divalent/analysis , Fluorescence , Limit of Detection , Spectrometry, Fluorescence/methods , Wastewater/analysis , Water/analysis
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