next up previous
Next: About this document ... Up: report Previous: Acknowledgments

References

Anderson, D. R., Carlson, D. E., Fried, E., 1999. A continuum-mechanical theory for nematic elastomers. J. Elasticity 56, 33-58.

Andrienko, D., Allen, M. P. 2000. Molecular simulation and theory of a liquid crystalline disclination core. Physical Review E 61 1, 504-510.

Bladon, P., Terentjev, E. M., Warner, M., 1994. Deformation-induced orientational transitions in liquid crystal elastomers. J. Phys. II France 4, 75-91.

item[] Bryan-Brown, G. P., Wood, E. L., Brown, C. V., Jones, J.C., Sage, I. C., and Brett, P., 1997. Grating aligned bistable nematic devices. Proceedings of The Electronic Information Displays Conference, Sandown, Surrey, UK, 18 -20 November 1997 .

Davis, F. J., 1993. Liquid-crystalline elastomers. J. Mater. Chem. 3 6, 551-562.

DeSimone A., Dolzmann, G., 2000. Material instabilities in nematic elastomers. Physica D 136, 175-191.

de Gennes, P. G., 1975. Réflexions sur un type de polymères nématiques. Comptes Rendus de l'Academy des Sciences 281, 101-103.

deGennes P. G., Hebert M., Kant R., 1997. Artificial muscles based on nematic gels. Macromolecular Symposia 113, 39-49.

Denniston, C., 1996. Disclination dynamics in nematic liquid crystals. Physical Review B 54 9, 6272-6275.

Everaers, R., Kremer, K., 1996. Elastic Properties of Polymer Networks. J. Mol. Model. 2 293-299.

Ericksen, J. L., 1961. Conservation laws for liquid crystals. Transactions of the Society of Rheology 5 23-34.

Ericksen, J. L., 1991. Liquid-crystals with variable degree of orientation. Archive for Rational Mechanics and Analysis 113 2, 97-120.

Finkelmann, H., 1988. Liquid crystals-state of the art. Angewandte Chemie 100, 1019-1020.

Finkelmann, H., Kim, S. T., Munoz, A., Palffy-Muhoray, P., Taheri, B., 2001. Tunable Mirrorless Lasing in Cholesteric Liquid Crystalline Elastomers. Advanced Materials 13 14.

Finkelmann, H., Kock, H. J., Rehage, G., 1981. Liquid crystalline elastomers-a new type of liquid crystalline material. Makromolekulare Chemie, Rapid Communications (2), 317-322.

Fried, E. and Korchagin, V. A., 2001. Striping of nematic elastomers. submitted to International Journal of Solids and Structures.

Fried, E. and Todres, R. E., 2001. Prediction of disclinations in nematic elastomers. PNAS 98 27 (to appear)

Fried, E. and Todres, R. E., 2001. Disclinated States in Nematic Elastomers. to appear in JMPS.

Grest, G. S., Kremer, K., 1990. Statistical Properties of Random Cross-Linked Rubbers. Macromolecules 23 4994-5000.

Grest, G. S., Kremer, K., 1990. Critical properties of crosslinked polymer melts. J. Phys. France 51 2829-2842.

Grest, G. S., Kremer, K., Duering, E. R., 1993. Kinetics and relaxation of end crosslinked polymer networks. Physica A 194 330-337.

Grest, G. S., P.utz, M., Everaers, R., Kremer, K., 2000. Stress-strain relation of entangled polymer networks. Journal of Non-Crystalline Solids 274 139-146.

Hudson, S. D., Larson, R. G., 1993. Monte Carlo Simulation of a Disclination Core in Nematic Solutions of Rodlike Molecules. Physical Review Letters 70 19, 2916-2919.

Leslie, F. M., 1968. Some constitutive relations for liquid crystals. Archive for Rational Mechanics and Analysis 28 265-283.

Verwey, G. C., Warner, M., Terentjev, E. M., 1996. Elastic Instability and Stripe Domains in Liquid Crystalline Elastomers. J. Phys. II France 6 1273-1290.

Warner, M. Gelling, K. P., Vilgis, T. A., 1988. Theory of nematic networks. Journal of Chemical Physics 88 4008-4013.

Zentel, R., 1989. Liquid crystalline elastomers. Angew. Chem. Adv. Mater. 101 10, 1437-1445.


next up previous
Next: About this document ... Up: report Previous: Acknowledgments
David Hardy
2001-12-17