Does the hydrophobic attraction contribute to the interaction between colloidal silica spheres coagulated by an adsorbing cationic surfactant?

被引:2
作者
Skvarla, Jiri [1 ]
机构
[1] Tech Univ Kosice, Inst Montaneous Sci & Environm Protect, Kosice 04001, Slovakia
关键词
Coagulation; Silica; Colloids; Hydrophobicity; Hydrophobic attraction; ATOMIC-FORCE MICROSCOPE; ADSORPTION-KINETICS; GLASS SURFACES; DISSOLVED-GAS; MICA SURFACES; LONG-RANGE; STABILITY; AGGREGATION; ELECTROLYTE; SUSPENSIONS;
D O I
10.1016/j.colsurfa.2012.01.025
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The character of the attractive interaction between hydrophobic surfaces, which is beyond the realm of the DLVO theory, is still under debate. The strength and extension of this non-DLVO, hydrophobic attraction (HA) between fixed macroscopic surfaces have been found to vary depending on the substrate type and, especially, the procedure adopted to render its surface hydrophobic. A related question is how HA manifests between hydrophobic colloidal particles in disperse systems. Here, the way of the particles' hydrophobization is expected lobe of utmost importance again. In the present article we compare experimentally determined absolute aggregation rate constants of uniform silica spheres at once hydrophobized and aggregated in water by a cationic surfactant (hexadecyltrimethylammonium bromide, CTAB) with their theoretical counterparts calculated from the DLVO theory in combination with hydrodynamic interactions and without any adjustable parameters. It has been found that both constants become identical when approaching a limiting magnitude in the specific situation of CTA(+) cations adsorbed on the surface of silica colloids to such an extent that they compensate the negative charge and at the same time maximally hydrophobize the surface. Moreover, the limiting magnitude of the rate constants is comparable with that measured and predicted for silica colloids coagulated by K+ cations (KCl). It is concluded that the aggregation of hydrophobic silica particles initiated by the surfactant adsorption can be considered as the electrolytic coagulation in the fast (diffusion-limited) regime with no energy barrier due to the electrostatic repulsion, driven solely by the van der Walls attraction. Consequently, HA does not seem to influence the coagulation process at least in this colloidal system. Possible reasons of the disagreement of this finding with previous results of direct force experiments on similar surfactant-hydrophobized macroscopic systems are discussed. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:33 / 41
页数:9
相关论文
共 73 条
[21]  
Derjaguin B.V., 1941, ACTA PHYSICOCHIM URS, V14, P633, DOI DOI 10.1016/0079-6816(93)90013-L
[22]   Modified Booth equation for the calculation of zeta potential [J].
Deshiikan, SR ;
Papadopoulos, KD .
COLLOID AND POLYMER SCIENCE, 1998, 276 (02) :117-124
[23]   About the Stability and Charging of the Aerosols [J].
Fuchs, N. .
ZEITSCHRIFT FUR PHYSIK, 1934, 89 (11-12) :736-743
[24]  
Fuchs N.A., 1964, MECH AEROSOLS, DOI DOI 10.1002/QJ.49709138822
[25]   The influence of dissolved gas on the interactions between surfaces of different hydrophobicity in aqueous media Part II. A spectroscopic study [J].
Gong, WQ ;
Stearnes, J ;
Fornasiero, D ;
Hayes, RA ;
Ralston, J .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 1999, 1 (11) :2799-2803
[26]  
Healy TW, 2006, SURF SCI SERIES, V131, P247
[27]   Electrophoresis of spherical polymer-coated colloidal particles [J].
Hill, RJ ;
Saville, DA ;
Russel, WB .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2003, 258 (01) :56-74
[28]   EFFECT OF HYDRODYNAMIC INTERACTION ON COAGULATION RATE OF HYDROPHOBIC COLLOIDS [J].
HONIG, EP ;
ROEBERSE.GJ ;
WIERSEMA, PH .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1971, 36 (01) :97-&
[29]   Attraction between hydrophobic surfaces with and without gas phase [J].
Ishida, N ;
Sakamoto, M ;
Miyahara, M ;
Higashitani, K .
LANGMUIR, 2000, 16 (13) :5681-5687
[30]   THE HYDROPHOBIC INTERACTION IS LONG-RANGE, DECAYING EXPONENTIALLY WITH DISTANCE [J].
ISRAELACHVILI, J ;
PASHLEY, R .
NATURE, 1982, 300 (5890) :341-342