Related Experiment Video
Updated: Feb 5, 2026

Preparation and Testing of Impedance-based Fluidic Biochips with RTgill-W1 Cells for Rapid Evaluation of Drinking Water Samples for Toxicity
Published on: March 7, 2016
Rapid synergistic cloud point extraction of copper in environmental samples with greenness and toxicity evaluation
Magda A Akl1, Eslam A Ghaith2, Aya G Mostafa2
1Department of Chemistry, Faculty of Science, Mansoura University, Mansoura, 31556, Egypt. magdaakl@yahoo.com.
Abstract:
Herein, a novel copper-triazole derivative Schiff base nanocomplex (HIT-Cu2+) was obtained via the reaction of the 3-(2-(4-amino-5-mercapto-4 H-1,2,4-triazol-3-yl)hydrazineylidene)indolin-2-one (HIT) Schiff base with CuCl2.6H2O. The non-ionic surfactant Triton X-114 (TX-114) was used as the extractant. The HIT, HIT-Cu2+, and HIT-Cu2+ in the organic layer were characterized by several techniques, including CHNS elemental analysis, ultraviolet-visible spectroscopy (UV-Vis), Fourier transform infrared spectroscopy (FT-IR), and transmission electron microscopy (TEM). The TEM results revealed the formation of the HIT-Cu2+ nanocomplex, with a particle size ranging from 13 to 25 nm. Moreover, an improved preconcentration method, named rapidly synergistic cloud point extraction (RS-CPE), was established for Cu2+ preconcentration and determination to overcome the issues investigated in CPE. Decanol acted as a cloud point revulsant and synergistic reagent, lowering the cloud point temperature (CPT) of TX-114, so that CPE could be done at room temperature without heating. Compared with traditional CPE (about 30 min for heating, incubation and cooling), RS-CPE was accomplished in 1 min with considerably high extraction efficiency. The improved extraction technique, RS-CPE, was combined with ICP-OES to improve the analytical performance and expand the application of ICP-OES determination. Various parameters that influence the Cu2+ removal efficiency (R, %) utilizing HIT Schiff base were investigated, including the solution's pH and volume, the concentration of HIT and Cu2+, type of surfactant, TX-114 concentration, equilibrium temperature and time, interfering ions, and centrifugation time and rate. At optimum conditions, the Cu2+ linear range, the correlation coefficient, the limit of detection (LOD), and the limit of quantification (LOQ) were 0.5-5 µg.mL- 1, 0.9999, 0.018, and 0.054 µg/L, respectively. The investigated RS-CPE/ICP-OES approach was applied to real water and pharmaceutical samples, achieving recoveries higher than 97% with a preconcentration factor of 125. The HIT-Cu2+ CPE mechanism in the organic layer of TX-114 is elucidated. The greenness of the methods was evaluated using two recent methods: the Analytical Greenness (AGREE) calculator and the Blue Applicability Green Index (BAGI), which produced results in the ranges of 0.64-0.71 and 60-67.5, respectively. These results are strongly aligned with both green ideals and environmentally friendly practices. The predicted toxicity of HIT and HIT-Cu2+ nanocomplex was evaluated using PROTOX 3 software.
More Related Videos
11:26Ecotoxicological Method with Marine Bacteria Vibrio anguillarum to Evaluate the Acute Toxicity of Environmental Contaminants
Published on: May 26, 2017
09:10Combination of Adhesive-tape-based Sampling and Fluorescence in situ Hybridization for Rapid Detection of Salmonella on Fresh Produce
Published on: October 18, 2010
Related Concept Videos
Base Excision Repair
The first step of...
Acid-Base Titration Curves
For a titration carried out for 25.00 mL of...
Lewis Acids and Bases
A coordinate covalent bond (or dative bond) occurs when one of the atoms in the bond provides both bonding electrons. For example, a coordinate covalent bond occurs when a water molecule combines with a hydrogen ion to form a hydronium ion. A coordinate covalent bond also results when...
Weak Base Solutions
Ions as Acids and Bases
Salts are ionic compounds composed of cations and anions, either of which may be capable of undergoing an acid or base ionization reaction with water. Aqueous salt solutions, therefore, may be acidic, basic, or neutral, depending on the relative acid-base strengths of the salt’s constituent ions. For example, dissolving the ammonium chloride in water results in its dissociation, as described by the equation:
DNA Base Pairing