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Research Article Open access CC BY 4.0

Enhanced Solubilisation of Insecticide Phosalone by Using Anionic and Cationic Surfactants in Aqueous Solution by Micellisation

Abdou Khadre Cissé, Nehou Diouf, Coumba Faye, Ibrahima Sarr, Souleymane Sambou, Aly Cissé, Boubacar Sidibé, Astou Ndiaye, El Hadji Tombé Bodian, Diène Diégane Thiaré, Atanasse Coly

Asian Journal of Chemical Sciences · pp. 137–147 · Published 28 Nov 2024

10.9734/ajocs/2024/v14i6340

Abstract

The objective of this study is to enhance the solubility of the insecticide phosalone in aqueous solution through micellisation. The cationic cetyltrimethylammonium chloride (CTAC) and the anionic sodium dodecyl sulfate (SDS) surfactants were used. The study employs a conductometric methodology to examine the interactions between the insecticide and the surfactant. The critical micellar concentration (CMC) and degree of counterions dissociation (α) of the surfactants were obtained at varying concentrations (0 to 3 µM) of the insecticide phosalone and temperatures between 301.15 and 321.15 K. In all cases, both parameters (CMC and α) demonstrated a decline in line with the increase in insecticide concentration and temperature. The thermodynamic parameters were calculated using the CMC versus temperature data. A positive value of ΔH° indicates that the micellisation process is endothermic. The negative values of ΔG° as a function of insecticide concentration and temperature demonstrate that the micellisation process is thermodynamically favorable and that the insecticide solubilises in the micelle core. The results of this study demonstrate that it is possible to solubilise a poorly soluble organic molecule by micellisation using conductivity alone, which is a valuable finding.

CTAC SDS CMC solubility surfactants

Cited by 1

Enhanced Solubility of Herbicide Diuron in Aqueous Solution by Micellisation

Souleymane Sambou, Ibrahima Sarr, Nehou Diouf · American Journal of Physical Chemistry · 2025

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