Electric Double Layer in Water-Organic Mixed Solvents: Titania in 50% Ethylene Glycol

Ethylene glycol (EG) and its mixtures with water are popular components of nanofluids used as heat transfer fluids. The stability of nanofluids against coagulation is correlated with their zeta potential. The electrophoretic mobility of titania nanoparticles in 50-50 w/w EG was studied as a function...

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Bibliographic Details
Main Authors: Kosmulski, M. (Author), Maczka, E. (Author)
Format: Article
Language:English
Published: MDPI 2022
Subjects:
Online Access:View Fulltext in Publisher
LEADER 02048nam a2200325Ia 4500
001 10-3390-molecules27072162
008 220425s2022 CNT 000 0 und d
020 |a 14203049 (ISSN) 
245 1 0 |a Electric Double Layer in Water-Organic Mixed Solvents: Titania in 50% Ethylene Glycol 
260 0 |b MDPI  |c 2022 
856 |z View Fulltext in Publisher  |u https://doi.org/10.3390/molecules27072162 
520 3 |a Ethylene glycol (EG) and its mixtures with water are popular components of nanofluids used as heat transfer fluids. The stability of nanofluids against coagulation is correlated with their zeta potential. The electrophoretic mobility of titania nanoparticles in 50-50 w/w EG was studied as a function of the concentration of various solutes. HCl, NaOH, SDS and CTMABr at concentrations up to 0.01 M are strong electrolytes in 50% EG, that is, the conductance of their solutions is proportional to the concentration. HCl, NaOH and CTMABr were very efficient in inducing a high zeta potential for titania in 50% EG. NaOH induced a negative zeta potential in excess of 70 mV, and HCl and CTMABr induced a positive zeta potential in excess of 70 mV at concentrations below 10−4 M. Apparently, HCl, NaOH and CTMABr are also more efficient than SDS in terms of nanofluid stabilization against coagulation. An overdose of base (>1 mM) results in depression of the negative zeta potential. This result may be due to the specific adsorption of sodium on titania from 50% EG. © 2022 by the authors. Licensee MDPI, Basel, Switzerland. 
650 0 4 |a electrophoresis 
650 0 4 |a ethylene glycol 
650 0 4 |a Ethylene Glycol 
650 0 4 |a nonaqueous solvents 
650 0 4 |a sodium hydroxide 
650 0 4 |a Sodium Hydroxide 
650 0 4 |a solvent 
650 0 4 |a Solvents 
650 0 4 |a stability of dispersion 
650 0 4 |a surfactants 
650 0 4 |a titanium 
650 0 4 |a Titanium 
650 0 4 |a titanium dioxide 
650 0 4 |a water 
650 0 4 |a Water 
700 1 |a Kosmulski, M.  |e author 
700 1 |a Maczka, E.  |e author 
773 |t Molecules