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Dynamic Aspects of Formation of Synthetic Membranes

Published online by Cambridge University Press:  10 February 2011

M. Thies
Affiliation:
Biotechnology & Physical Chemistry, Märkische Fachhochschule, Iserlohn, D-58644, Frauenstuhlweg 31, P.O.BOX 2061, Germany, [email protected]
H. H. Paradies
Affiliation:
Biotechnology & Physical Chemistry, Märkische Fachhochschule, Iserlohn, D-58644, Frauenstuhlweg 31, P.O.BOX 2061, Germany, [email protected]
S. F. Clancy
Affiliation:
Witco Corporation, Research & Development, P.O. Box 646, Dublin, OH 43017, & Safety, Health, & Environmental Affairs, One American Line, Greenwich, CT 068131–2559, USA
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Abstract

A detailed physical analysis of data obtained from static light and dynamic light scattering experiments with polymer-like distearyldimethylammonium OH (DSDMA X) micelles has been undertaken at dilute and semidilute concentrations, and compared with those in the presence of racemic and enantiomeric anions, e.g. S-(+)-lactate or the R-(-)-enantiomer.

Type
Research Article
Copyright
Copyright © Materials Research Society 1997

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References

REFERENCES

[1] Parsegian, V.A., Trans. Faraday Soc. 62, 848, (1966)Google Scholar
[2] Jönsson, B., Wennerström, H., J. Colloid Interface Sci., 80, 482, (1981)Google Scholar
[3] Wennerström, H., Prog. Colloid Polymer. Sci., 74, 31, (1987)Google Scholar
[4] Jönsson, B., Wennerström, H., J. chem. Soc, Faraday Trans. 2, 79, 19, (1983)Google Scholar
[5] Israelachvili, J.N., Wennerström, H., Langmuir, 6, 873, (1990)Google Scholar
[6] Nilsson, U., Jönsson, B., Wennerström, H., Faraday Discus. 90, (1990)Google Scholar
[7] Jönsson, B., Wennerström, H., Chem. Scr., 25, 117, (1985)Google Scholar
[8] Paradies, H.H., J. Phys. Chem., 90, 5956, (1986);Google Scholar
Paradies, H.H., Medicinale, 14, 113, (1984);Google Scholar
Paradies, H.H., Colloids. Surf., 6, 405, (1983);Google Scholar
Paradies, H.H., Angew. Chem., 94, 793, (1982);Google Scholar
Paradies, H.H., Angew. Chem. Supplement, 19701981, (1982)Google Scholar
[9] Ben-Shaul, A., Gelbart, W.M., in Micelles, Membranes, Microemulsion & Monolayers. edited by Gelbart, W.M., Ben-Shaul, A., Roux, D.; New York: Springer pp 1104, (1994).Google Scholar
[10] Brady, J.F., Evans, D.F., Warr, G.G., Grieser, F., Ninham, B.W., J. Phys. Chem., 90, 1853, (1986)Google Scholar
[11] Clancy, S.F., Steiger, P.H., Tanner, D.A., Thies, M., Paradies, H.H., J. Phys. Chem., 98, 11143, (1994)Google Scholar
[12] Clancy, S.F., Tanner, D.A., Thies, M., Paradies, H.H., Extended Abstracts, Division of Environmental Chemistry, San Francisco, CA, 203rd National Meeting of the American Chemical Society, Vol. 32, No 1, 907908, (1992)Google Scholar
[13] Paradies, H.H., Thies, M., Clancy, S.F., J. Org. Chem., submitted (1996)Google Scholar
[14] Des Clizeaux, J., J Phys. Chem., 36, 281, (1975)Google Scholar
[15] Provencher, S.W., Makromol. Chem, 180, 201, (1979)Google Scholar
[16] Rouse, P.E., J. Chem. Phys., 21, 1272, (1955)Google Scholar
[17] Zimm, B.H., J. Chem. Phys., 24, 269, (1956)Google Scholar
[18] Fijima, S. & Maruyama, M., Macromolecules, 6, 237, (1973)Google Scholar
[19] Ott, A., Urbach, W., Langevin, D., Schurtenberger, P., Scartazzini, R., Luisi, P.L., J. Phys.: Condens. Matter, 2, 5907, (1990)Google Scholar
[20] Cates, M.E., Macromolecules, 20, 2289, (1987);Google Scholar
Granek, R. & Cates, M.E., J. Chem. Phys., 96, 4756, (1992)Google Scholar
[21] Thies, M., Clancy, S.F., Paradies, H.H., J. Phys. Chem., 100, 9881, (1996);Google Scholar
Paradies, H.H., Wagner, D.W., Fischer, W.R., Ber. Bunsen. Ges. Phys. Chem., 100, 1299, (1996);Google Scholar
Paradies, H.H., Thies, M., Clancy, S.F., J. Phys. Chem., submitted (1996)Google Scholar