UNDERSTANDING COLLOIDAL CHARGE RENORMALIZATION FROM SURFACE-CHEMISTRY - EXPERIMENT AND THEORY

被引:141
作者
GISLER, T
SCHULZ, SF
BORKOVEC, M
STICHER, H
SCHURTENBERGER, P
DAGUANNO, B
KLEIN, R
机构
[1] ETH ZURICH,INST POLYMER,CH-8092 ZURICH,SWITZERLAND
[2] CTR ADV STUDIES SARDINIA,I-91000 CAGLIARI,ITALY
[3] UNIV KONSTANZ,FAC PHYS,D-78434 CONSTANCE,GERMANY
关键词
D O I
10.1063/1.467894
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
In this paper we report on the charging behavior of latex particles in aqueous suspensions. We use static light scattering and acid-base titrations as complementary techniques to observe both effective and bare particle charges. Acid-base titrations at various ionic strengths provide the pH dependent charging curves. The surface chemical parameters (dissociation constant of the acidic carboxylic groups, total density of ionizable sites and Stern capacitance) are determined from fits of a Stern layer model to the titration data. We find strong evidence that the dissociation of protons is the only specific adsorption process. Effective particle charges are determined by fits of integral equation calculations of the polydisperse static structure factor to the static light scattering data. A generalization of the Poisson-Boltzmann cell model including the dissociation of the acidic surface groups and the autodissociation of water is used to predict effective particle charges from the surface chemical parameters determined by the titration experiments. We find that the light scattering data are best described by a model where a small fraction of the ionizable surface sites are sulfate groups which are completely dissociated at moderate pH. These effective charges are comparable to the predictions by a basic cell model where charge regulation is absent. © 1994 American Institute of Physics.
引用
收藏
页码:9924 / 9936
页数:13
相关论文
共 37 条
[1]  
AGUANNO BD, 1991, J CHEM SOC FARADAY T, V87, P379
[2]   CHARGE RENORMALIZATION, OSMOTIC-PRESSURE, AND BULK MODULUS OF COLLOIDAL CRYSTALS - THEORY [J].
ALEXANDER, S ;
CHAIKIN, PM ;
GRANT, P ;
MORALES, GJ ;
PINCUS, P ;
HONE, D .
JOURNAL OF CHEMICAL PHYSICS, 1984, 80 (11) :5776-5781
[3]  
[Anonymous], 1955, J MATH PHYS, DOI [DOI 10.1080/00207167308803075, DOI 10.1002/SAPM19553411]
[4]   INABILITY OF THE HYPERNETTED-CHAIN INTEGRAL-EQUATION TO EXHIBIT A SPINODAL LINE [J].
BELLONI, L .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (10) :8080-8095
[6]   A HYPERNETTED CHAIN STUDY OF HIGHLY ASYMMETRICAL POLY-ELECTROLYTES [J].
BELLONI, L .
CHEMICAL PHYSICS, 1985, 99 (01) :43-54
[7]   MEAN SPHERICAL MODEL FOR ASYMMETRIC ELECTROLYTES .1. METHOD OF SOLUTION [J].
BLUM, L .
MOLECULAR PHYSICS, 1975, 30 (05) :1529-1535
[8]   MEAN SPHERICAL MODEL FOR ASYMMETRIC ELECTROLYTES .2. THERMODYNAMIC PROPERTIES AND PAIR CORRELATION-FUNCTION [J].
BLUM, L ;
HOYE, JS .
JOURNAL OF PHYSICAL CHEMISTRY, 1977, 81 (13) :1311-1317
[9]   SMALL-ANGLE NEUTRON-SCATTERING STUDY OF IONIC NONIONIC MIXED MICELLES [J].
BUCCI, S ;
FAGOTTI, C ;
DEGIORGIO, V ;
PIAZZA, R .
LANGMUIR, 1991, 7 (05) :824-826
[10]  
CARNIE SL, 1987, ADV CHEM PHYSICS, V56