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Spherical polyelectrolyte block copolymer micelles: Structural change in presence of monovalent salt
Authors:F?Muller  Email author" target="_blank">P?GuenounEmail author  M?Delsanti  B?Demé  L?Auvray  J?Yang  J?W?Mays
Institution:(1) Service de Physique de lrsquoEtat Condensé, CEA-Saclay, DRECAM, F-91191 Gif-sur-Yvette Cedex, France;(2) Laboratoire Interdisciplinaire sur lrsquoOrganisation Nanométrique et Supramoléculaire (LIONS), Service de Chimie Moléculaire, CEA-Saclay, DRECAM, F-91191 Gif-sur-Yvette Cedex, France;(3) Institut Laue-Langevin, B.P. 156, F-38042 Grenoble Cedex, France;(4) Laboratoire Léon Brillouin, CEA-Saclay, DRECAM, F-91191 Gif-sur-Yvette Cedex, France;(5) Waters Corporation, 34 Maple Street, 01757-3696 Milford, MA, USA;(6) Chemical Sciences Division, Oak Ridge National Laboratory, Department of Chemistry, University of Tennessee, 552 Buehler Hall, 37996-1600 Knoxville, TN, USA
Abstract:Spherical polyelectrolyte block copolymer micelles were investigated as a function of added NaCl salt concentration using Small-Angle Neutron Scattering (SANS) and Light Scattering (LS). The micelles are formed by the self-association of charged-neutral copolymers made of a long deuterated polyelectrolyte moiety (NaPSSd)251 and a short hydrophobic moiety (PEP)52. In presence of salt, the core shape and the aggregation number of the micelles are not affected. The hydrodynamic radius of the micelle is found to be identical to the radius of the whole micelle deduced from neutron scattering and thus the hydrodynamic radius is a valid measure of the corona thickness. At the lowest salt concentrations investigated the thickness of the corona, Rs, remains essentially constant and a contraction is observed above an added-salt concentration cs of 2×10-2 M where this crossover concentration corresponds to the average ionic strength of the free counterions in the corona. The contraction takes place while maintaining a rod-like behavior of the chains at short scale and obeys to: Rs sim cs-0.18. The exponent 0.18 suggests an electrostatic persistence length proportional to the Debye screening length.
Keywords:61  25  Hq Macromolecular and polymer solutions  polymer melts  swelling  82  35  Rs Polyelectrolytes  83  80  Uv Block copolymers
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