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Mechanism of Electrical Percolation of w/o Microemulsions Formed by Nonionic Surfactants
Authors:Fang Wang  Zhiqing Zhang  Saiyu Zhang
Affiliation:1. Research Center of Chemical Engineering, East China University of Science and Technology , Shanghai, China;2. College of Chemistry and Chemical Engineering, China University of Petroleum , Dongying, China;3. College of Chemistry and Chemical Engineering, China University of Petroleum , Dongying, China;4. Research Center of Chemical Engineering, East China University of Science and Technology , Shanghai, China
Abstract:A study was carried out on the mechanism of electrical conductivity percolation of H2O/C16EO20/n-butanol/heptane microemulsions. Electrical conductivity, UV-vis spectroscopy and FTIR spectra were used to study the diluted “dry” microemulsions with the mass ratio of C16EO20/n-butanol/heptane = 3:3:4. The results of electrical conductivity showed that the percolation occurred around φw = 20 wt% and the transition of w/o microemulsions to bicontinueous microemulsions happened when φw = 45 wt%. From the UV-vis absorption spectra, it was found that the absorption of methyl orange (MO) in microemulsions shifted red than that of in oil phase, but the maximal absorption peak (λmax) remained unchanged when φw > 20 wt%. It implied that the position of MO solubilized in microemulsions was unvaried after free water appeared in the core. FTIR spectra revealed that the OH band of water in microemulsions moved to high frequency at low φw (< 20 wt%) and became broader at high φw. It indicated that the added water only caused the hydration of EO at low φw, the hydration completed when φw > 20 wt% and then the residual water entered into the core with properties similar to bulk water. The presence of free water as ions exchange medium will cause the electrical conductance increased. The percolation appeared after the hydration of EO completed.
Keywords:Electrical percolation  hydration of polar headgroups  microemulsion  nonionic surfactant
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