STRUCTURE AND PROPERTIES OF POLYELECTROLYTE-SURFACTANT NONSTOICHIOMETRIC COMPLEXES IN LOW-POLARITY SOLVENTS

Citation
Kn. Bakeev et al., STRUCTURE AND PROPERTIES OF POLYELECTROLYTE-SURFACTANT NONSTOICHIOMETRIC COMPLEXES IN LOW-POLARITY SOLVENTS, Macromolecules, 29(4), 1996, pp. 1320-1325
Citations number
23
Categorie Soggetti
Polymer Sciences
Journal title
ISSN journal
00249297
Volume
29
Issue
4
Year of publication
1996
Pages
1320 - 1325
Database
ISI
SICI code
0024-9297(1996)29:4<1320:SAPOPN>2.0.ZU;2-V
Abstract
Solutions of complexes of poly(N-ethyl-4-vinylpyridinium) cations and dodecyl sulfate anions in chloroform are studied by viscometry, isothe rmal diffusion, flow birefringence, and dynamic light scattering techn iques. Stoichiometric polyelectrolyte-surfactant complexes as well as nonstoichiometric ones with the compositions 0.55-1.0, expressed as th e molar ratio of surfactant ions to the polycation chain units, neithe r form interchain associations nor dissociate into individual componen ts in dilute solutions in chloroform. A decrease in the complexes' com position, i.e., a substitution of dodecyl anions with bromide anions, results in an increase of diffusion coefficients and a decrease in the intrinsic viscosity and in the absolute value of the negative segment al optical anisotropy of macromolecules of such complexes. Solubility of the studied complexes in low-polarity solvents increases in the ord er chloroform > chlorobenzene > benzene and decreases with decrease in the composition of complexes. Interchain associations dominate in dil ute solutions of the complexes in chlorobenzene. Introduction of 1 vol % of cosolvent (methanol) to the dilute solutions of the complexes in chloroform and chlorobenzene (i) does not cause any change in the dif fusion coefficient of the stoichiometric complex in chloroform, (ii) c auses a decrease in the diffusion coefficient of the nonstoichiometric complexes in chloroform down to the value close to that of the stoich iometric complex, and (iii) causes an increase (more than an order of magnitude) in the diffusion coefficients of stoichiometric and nonstoi chiometric complexes in chlorobenzene up to the values close to those of complexes in chloroform.