Adsorption of cationic and anionic surfactants on metal oxide surfaces: Surface charge adjustment and competition effects

被引:52
作者
Lee, EM [1 ]
Koopal, LK [1 ]
机构
[1] WAGENINGEN UNIV AGR,DEPT PHYS & COLLOID CHEM,6703 HB WAGENINGEN,NETHERLANDS
关键词
ad-micelles; adsorption in hemi-micelles; adsorption in nonyl benzene sulphonate; adsorption dodecyl pyridinium chloride; adsorption tetradecyl pyridinium chloride; adsorption rutile; adsorption on adaptation; surface charge surface charge; adjustment surfactant; ionic strength effect on adsorption theory; selfconsistent field (SCF) for adsorption;
D O I
10.1006/jcis.1996.0061
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 adsorption of cationic and anionic surfactants on rutile is studied as a function of surfactant concentration and ionic strength in solution. The pH is kept constant for each series of isotherms. Special attention is given to the extent of adaptation of the surface charge as a function of surfactant adsorption. Experimental results are complemented with model calculations based on the self-consistent (mean) field lattice theory for adsorption and association (SCFA) to confirm the correctness of the given interpretation. The adsorption behavior of sodium nonyl benzene sulfonate (SNBS) and dodecyl or tetradecyl pyridinium chloride (DPC/TPC) on rutile is broadly similar. Isotherms can be divided in two regions by the (approximately) common intersection point (cip) between isotherms measured at different salt concentrations, Before the cip adsorption occurs head-on (hemi-micelles); after the cip both head-on and head-out adsorption( ad-micelles) occur. Intersection points similar to the cip occur in the proton excess and the net surface charge/surfactant charge plots. Although broadly similar in their adsorption behavior, the SNBS and DPC/TPC systems differ markedly if the charge situation near the interface is considered. SNBS follows simple rules; the strongly adsorbing SNBS head groups can compete easily with the salt ions for the surface sites. The point where the surface charge and the surfactant charge balance, the equivalence point, and the cip in the isotherms coincide. Moreover, the cip corresponds with the isoelectric point (iep). The DPC and TPC systems behave in a more complicated way, due to their relatively weak interaction with the surface. The cip in the isotherms and the cip in the net surface/surfactant charge plots occur at much lower adsorption values than the equivalence point. Go-ions thus contribute at the cip to the charge balance in the surface region, In this situation the iep will occur at lower adsorption values than the cip. (C) 1996 Academic Press, Inc.
引用
收藏
页码:478 / 489
页数:12
相关论文
共 23 条
[1]   ADSORPTION AT RUTILE-SOLUTION INTERFACE .I. THERMODYNAMIC AND EXPERIMENTAL STUDY [J].
BERUBE, YG ;
DEBRUYN, PL .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1968, 27 (02) :305-&
[2]   ADSORPTION OF NONIONIC SURFACTANTS ON HYDROPHILIC SURFACES - AN EXPERIMENTAL AND THEORETICAL-STUDY ON ASSOCIATION IN THE ADSORBED LAYER [J].
BOHMER, MR ;
KOOPAL, LK ;
JANSSEN, R ;
LEE, EM ;
THOMAS, RK ;
RENNIE, AR .
LANGMUIR, 1992, 8 (09) :2228-2239
[3]   ADSORPTION OF IONIC SURFACTANTS ON VARIABLE-CHARGE SURFACES .2. MOLECULAR ARCHITECTURE AND STRUCTURE OF THE ADSORBED LAYER [J].
BOHMER, MR ;
KOOPAL, LK .
LANGMUIR, 1992, 8 (11) :2660-2665
[4]   ADSORPTION OF IONIC SURFACTANTS ON VARIABLE-CHARGE SURFACES .1. CHARGE EFFECTS AND STRUCTURE OF THE ADSORBED LAYER [J].
BOHMER, MR ;
KOOPAL, LK .
LANGMUIR, 1992, 8 (11) :2649-2659
[5]   MICELLIZATION OF IONIC SURFACTANTS - CALCULATIONS BASED ON A SELF-CONSISTENT FIELD LATTICE MODEL [J].
BOHMER, MR ;
KOOPAL, LK ;
LYKLEMA, J .
JOURNAL OF PHYSICAL CHEMISTRY, 1991, 95 (23) :9569-9578
[6]   WEAK POLYELECTROLYTES BETWEEN 2 SURFACES - ADSORPTION AND STABILIZATION [J].
BOHMER, MR ;
EVERS, OA ;
SCHEUTJENS, JMHM .
MACROMOLECULES, 1990, 23 (08) :2288-2301
[7]   ADSORPTION OF IONIC SURFACTANTS ON CONSTANT CHARGE SURFACES - ANALYSIS BASED ON A SELF-CONSISTENT FIELD LATTICE MODEL [J].
BOHMER, MR ;
KOOPAL, LK .
LANGMUIR, 1992, 8 (06) :1594-1602
[8]  
COLICHMAN EL, 1950, J AM CHEM SOC, V81, P1834
[9]   ADSORPTION OF ORGANIC IONS AT THE SOLID-ELECTROLYTE INTERFACE - INTERPRETATION OF COMMON INTERSECTION POINTS [J].
DEKEIZER, A ;
BOHMER, MR ;
MEHRIAN, T ;
KOOPAL, LK .
COLLOIDS AND SURFACES, 1990, 51 :339-357
[10]   STATISTICAL THERMODYNAMICS OF BLOCK COPOLYMER ADSORPTION .1. FORMULATION OF THE MODEL AND RESULTS FOR THE ADSORBED LAYER STRUCTURE [J].
EVERS, OA ;
SCHEUTJENS, JMHM ;
FLEER, GJ .
MACROMOLECULES, 1990, 23 (25) :5221-5233