A novel capillary flow device has been developed and applied to study the orientation of worm-like micelles, among other systems. Small-angle X-ray scattering (SAXS) data from micelles formed by a Pluronic block copolymer in aqueous salt solution provides evidence for the formation of worm-like micelles, which align under flow. A transition from a rod-like form factor to a less persistent conformation is observed under flow. Flow alignment of worm-like micelles formed by the low molar mass amphiphile system cetyl pyridinium chloride+sodium salicylate is studied for comparative purposes. Here, inhomogenous flow at the micron scale is revealed by streaks in the small-angle light scattering pattern perpendicular to the flow direction. Copyright (c) 2006 John Wiley & Sons, Ltd.
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DESY, Hamburg Unit, European Mol Biol Lab, Hamburg, GermanyDESY, Hamburg Unit, European Mol Biol Lab, Hamburg, Germany
Jeffries, Cy M.
Ilavsky, Jan
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Argonne Natl Lab, Adv Photon Source, Lemont, IL USADESY, Hamburg Unit, European Mol Biol Lab, Hamburg, Germany
Ilavsky, Jan
Martel, Anne
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Inst Max Von Laue Paul Langevin, Grenoble, FranceDESY, Hamburg Unit, European Mol Biol Lab, Hamburg, Germany
Martel, Anne
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Hinrichs, Stephan
Meyer, Andreas
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Univ Hamburg, Inst Phys Chem, Hamburg, GermanyDESY, Hamburg Unit, European Mol Biol Lab, Hamburg, Germany
Meyer, Andreas
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Pedersen, Jan Skov
Sokolova, Anna, V
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Australian Nucl Sci & Technol Org ANSTO, Australian Ctr Neutron Scattering, Lucas Heights, NSW, AustraliaDESY, Hamburg Unit, European Mol Biol Lab, Hamburg, Germany
Sokolova, Anna, V
Svergun, Dmitri, I
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DESY, Hamburg Unit, European Mol Biol Lab, Hamburg, GermanyDESY, Hamburg Unit, European Mol Biol Lab, Hamburg, Germany