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Titlebook: Surface and Colloid Science; Valdemaras Razumas,Björn Lindman,Tommy Nylander Conference proceedings 2001 Springer-Verlag Berlin Heidelberg

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0340-255X ltic Meeting on Surface and Colloid Science, which was held in Vilnius, Lithuania on August 21-25, 1999, as a continuation of the traditional Scandinavian Symposium on Surface Chemistry.978-3-662-14693-4978-3-540-44941-6Series ISSN 0340-255X Series E-ISSN 1437-8027
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0340-255X ribers to Colloid and Polymer Science are entitled to a 20 %Leading Nordic-Baltic scientists and their colleagues from other countries present recent research on a broad range of topics in surface and colloid science: adhesion, adsorption processes, characterization of solid/liquid and solid/polymer
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Conference proceedings 2001cience: adhesion, adsorption processes, characterization of solid/liquid and solid/polymer interfaces, chemical and particle depositions, colloid stability, emulsification and encapsulation, interfacial reactions, new surfactants, polymer-surfactant interactions, self-assembly processes, and functio
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On the swelling of monoolein liquid-crystalline aqueous phases in the presence of distearoylphosphate addition of up to 10 wt% DSPG using small-angle X-ray diffraction. Generally, the introduction of this anionic phospholipid leads to an increased hydration of the liquid-crystalline phases compared to the binary MO—water system. In the binary MO—water system, the cubic phase could be swollen to ab
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Entrapment of glucose oxidase into the cubic Q230 and Q224 phases of aqueous monooleinf aqueous monoolein (MO, 86 wt% monooleoylglycerol). At 25 °C, a partial phase diagram of the MO/GOD/H.O system indicated that the Q. phase can accommodate only up to 0.5 wt% of the commercial GOD preparation. At higher GOD contents, this cubic phase transforms into a reversed hexagonal phase (H.).
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DNA-surfactant complexes in a water/alcohol mixtures of UV and IR spectroscopy and flame photometry the stoichiometric polyelectrolyte—surfactant complexes were characterized. The data of high-rate sedimentation and UV spectroscopy show that nonstoichiometric soluble complexes can be formed in the presence of 40% (v/v) water/2-propanol.
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