Microphase separation in weakly charged hydrophobic polyelectrolytes

被引:16
作者
Braun, O
Boué, F
Candau, F
机构
[1] Inst Charles Sadron, CNRS, UPR 22, F-67083 Strasbourg, France
[2] CEA Saclay, CNRS, UMR 12, Lab Leon Brillouin, F-91191 Gif Sur Yvette, France
关键词
D O I
10.1140/epje/i200101149
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
Aqueous solutions of a well-defined poly (N-isopropylacrylamide-co-sodium 2-acrylamido-methylpropanesulfonate) (NIPAM/NaAMPS in a 95/5 molar ratio) have been investigated by means of small-angle neutron scattering (SANS) and rheological experiments as a function of temperature (25 degreesC less than or equal to T less than or equal to 60 degreesC) and polymer concentration (0.5 wt% less than or equal to C less than or equal to 12 wt%). The solutions remain optically transparent and isotropic over the whole temperature range, in contrast with the homopolyNIPAM which precipitates above its lower critical solution temperature (LCST = 32 degreesC). Upon addition of salt, the systems undergo a micro-macrophase separation. At temperatures above 45 degreesC, the SANS spectra exhibit a sharp peak at a scattering wave vector, q(max), which increases slightly with temperature. At high temperature (T similar to 60 degreesC), the scattered intensity follows a power law I(q) similar to q(-4) in the asymptotic regime, characteristic of two-density media with sharp interfaces, and q(max) is found to vary with polymer concentration as q(max) similar to C-0.22. Estimates of the typical sizes give values between 40 Angstrom and 200 Angstrom. These results provide a strong evidence of a thermally induced microphase separation, which is corroborated by the very sharp increases of the viscosity (over 2 decades) and of the stress relaxation time of the solutions, occurring in the temperature range where the scattering peak is observed. The results are discussed and compared with the theoretical models proposed for weakly charged polyelectrolytes in a poor solvent.
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收藏
页码:141 / 151
页数:11
相关论文
共 40 条
[11]   MICROPHASE SEPARATION IN POOR-SOLVENT POLYELECTROLYTE SOLUTIONS - PHASE-DIAGRAM [J].
DORMIDONTOVA, EE ;
ERUKHIMOVICH, IY ;
KHOKHLOV, AR .
MACROMOLECULAR THEORY AND SIMULATIONS, 1994, 3 (04) :661-675
[12]  
DUMOUSSEAUX C, 2000, THESIS U PARIS 7
[13]   Thermoassociative graft copolymers: NMR investigation and comparison with rheological behaviour [J].
Durand, A ;
Hourdet, D ;
Lafuma, F .
JOURNAL OF PHYSICAL CHEMISTRY B, 2000, 104 (40) :9371-9377
[14]   Domain structures in low ionic strength polyelectrolyte solutions [J].
Ermi, BD ;
Amis, EJ .
MACROMOLECULES, 1998, 31 (21) :7378-7384
[15]  
ESSAFI W, 1994, MACROION CHARACTERIZ
[16]   STATIC AND DYNAMIC LIGHT-SCATTERING BY AQUEOUS POLYELECTROLYTE SOLUTIONS - EFFECT OF MOLECULAR-WEIGHT, CHARGE-DENSITY AND ADDED SALT [J].
FORSTER, S ;
SCHMIDT, M ;
ANTONIETTI, M .
POLYMER, 1990, 31 (05) :781-792
[17]   X-ray scattering study of a poly(methacrylic acid) sample as a function of its neutralization degree [J].
Heitz, C ;
Rawiso, M ;
François, J .
POLYMER, 1999, 40 (07) :1637-1650
[18]  
Heskins M., 1968, J MACROMOL SCI CHEM, V2, P1441, DOI DOI 10.1080/10601326808051910
[19]  
Higgins J.S., 1994, POLYM NEUTRON SCATTE
[20]   WEAKLY CHARGED POLYELECTROLYTES IN A POOR SOLVENT [J].
JOANNY, JF ;
LEIBLER, L .
JOURNAL DE PHYSIQUE, 1990, 51 (06) :545-557