Formation and Dynamics of Self-Organized Structures in by Kyoji Kawasaki, Bjoern Lindmann, Hirofumi Okabayashi

By Kyoji Kawasaki, Bjoern Lindmann, Hirofumi Okabayashi

The foreign Symposium on Colloid and Polymer technological know-how used to be held at Nagoya Institute of expertise, Nagoya, Japan, in October 1996. this system coated either the basic elements in addition to technological purposes of micelles, microemulsions, monolayers, and biocolloids. precise emphasis used to be put on formation and dynamics of self-organized buildings, together with technical advancements, functions, basic concept, and result of investigations.

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Richetti P, K6kicheff P (1992) Phys Rev Lett 68:1951 1954 32. Bergeron V, Radke CJ (1992) Langmuir 8:3020-3026 Progr Colloid Polym Sci (t997) 106:34 41 9 SteinkopffVerlag 1997 O. S6derman Received: 13 October 1996 Accepted: 4 February 1997 Dr. O. O. Box 124 22100 Lund, Sweden Pulsed field gradient NMR studies of emulsions: droplet sizes and concentrated emulsions Abstract In this contribution we suggest that nuclear magnetic resonance constitutes a promising technique for studying essential features of emulsions.

O. Box 124 22100 Lund, Sweden Pulsed field gradient NMR studies of emulsions: droplet sizes and concentrated emulsions Abstract In this contribution we suggest that nuclear magnetic resonance constitutes a promising technique for studying essential features of emulsions. The background of the method is discussed, and it is emphasized that the method determines the mean-squared displacements of molecules over distances of order 10 - 6 m . It is pointed out that such distances correspond to typical emulsion droplet sizes.

M. -H. 1 Fig. 20. (a) Raw data after background correction, (b)-(d) three representative curves comparing the theory and the experimental data. Solid lines are the fits using modified Berk theory 102 10 2 _~ ~ 10~! l Q(A-t) c) boundary. All the intensities are corrected for background. In Figs. 3b d, the circles are experimental data and solid lines are theoretical fits using Eqs. (15) and (29) in Eq. (1) plus an incoherent background. These show a good agreement of theory with the experimental data.

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