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Rich Dynamics in Diblock Copolymers

Published online by Cambridge University Press:  01 February 2011

G. Fytas*
Affiliation:
Department of Materials Science and Technology University of Crete and FO.R.T.H, P.O. Box 1527, 71110, Heralkion Greece Max Planck Institute for Polymer Research, P.O. Box, 3148, 55128 Mainz, Germany
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Abstract

The dynamic structure factor S(q, t) of ultra-high molecular mass diblock copolymers BC in a common solvent was systematically investigated by photon correlation spectroscopy in different regimes of the phase diagram. Through proper probing of the composition fluctuations in symmetric and asymmetric BC the different relaxation mechanisms were identified and the influence of the disorder to order (ODT) transition was assessed. In the disordered regime, S(q, t) sensitively depends on the composition polydispersity of BC and the proximity to ODT complementing the real phase morphology of BC. The dynamic response of BC is therefore predictable.

Type
Research Article
Copyright
Copyright © Materials Research Society 2005

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References

REFERENCES

1. Rosedale, J.H., Bates, F.S., Almdahl, K., Mortensen, K., and Wignall, G.D., Macromolecules 28, 1429 (1995).Google Scholar
2. Montes, H., Monkenbusch, M., Willner, L., Rathgeber, S., Fetters, L., and Richter, D., J. Chem. Phys. 110, 10188 (1999).Google Scholar
3. Fredrickson, G.H., and Leibler, L., Macromolecules 22, 1238 (1989).Google Scholar
4. Whitmore, M.D., and Noolandi, J.J., J. Chem. Phys. 93, 2946 (1990).Google Scholar
5. Koga, T., Koga, T., Hashimoto, T., J. Chem. Phys. 110, 11076 (1999).Google Scholar
6. Lodge, T.P., Pudil, B., and Hanley, K.J., Macromolecules 35, 4707 (2002).Google Scholar
7. Chrissopoulou, K., Priamitsyn, V.A., Anastasiadis, S.H., Fytas, G., Semenov, A.N., Xenidou, M. and Hadjichristidis, N., Macromolecules 34, 2156 (2201).Google Scholar
8. Sigel, R., Pispas, S., Hadjichristidis, N., Vlassopoulos, D., Fytas, G., Macromolecules 32, 8447 (1999).Google Scholar
9. Holmqvist, P., Pispas, S., Sigel, R., Hadjichristidis, N. and Fytas, G., Macromolecules 35, 3157 (2002).Google Scholar
10. Holmqvist, P., Pispas, S., Hadjichristidis, N., Fytas, G., and Sigel, R., Macromolecules 36, 830 (2003).Google Scholar
11. Holmqvist, P., Fytas, G., Pispas, S., Hadjichristidis, N., Saijo, K., Tanaka, H. and Hashimoto, T., Macromolecules 37, 4909 (2004).Google Scholar