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Novel Vitrified Liquid Crystals and Potential Applications

Published online by Cambridge University Press:  10 February 2011

S. H. Chen
Affiliation:
Center for Optoelectronics & Imaging and Laboratory for Laser Energetics, 240 East River Road, University of Rochester, Rochester, New York 14623-1212.
H. Shi
Affiliation:
Center for Optoelectronics & Imaging and Laboratory for Laser Energetics, 240 East River Road, University of Rochester, Rochester, New York 14623-1212.
B. M. Conger
Affiliation:
Center for Optoelectronics & Imaging and Laboratory for Laser Energetics, 240 East River Road, University of Rochester, Rochester, New York 14623-1212.
D. Katsis
Affiliation:
Center for Optoelectronics & Imaging and Laboratory for Laser Energetics, 240 East River Road, University of Rochester, Rochester, New York 14623-1212.
J. C. Mastrangelo
Affiliation:
Center for Optoelectronics & Imaging and Laboratory for Laser Energetics, 240 East River Road, University of Rochester, Rochester, New York 14623-1212.
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Abstract

An overview is presented for a generic approach to low molar mass liquid crystalline materials capable of vitrification into morphologically stable, optically anisotropic thin films. Potential applications as polarization control devices, optical notch filters, and luminescent elements will be explored. Preliminary data for defect formation and annihilation will also be presented to illustrate an advantage of low molar mass materials over polymer analogs.

Type
Research Article
Copyright
Copyright © Materials Research Society 1996

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References

1. Wedler, W., Demus, D., Zaschke, H., Mohr, K., Schafer, W., and Weissflog, W., J. Mater. Chem., 1, 347 (1991).Google Scholar
2. Percec, V. and Kawasumi, M., Liquid Crystals, 13, 83 (1993).Google Scholar
3. Freidzon, Y.S., D'yachenko, M., Tur, D.R., and Shibadv, V.P., Polymer Preprints, 34 (1), 146 (1993).Google Scholar
4. Kreuzer, F.-H., Andrejewski, D., Haas, W.; Haiberle, N., Riepl, G., and Spes, P., Mol. Cryst. Liquid Crystals, 199, 345 (1991).Google Scholar
5. Gresham, K.D., McHugh, C.M., Bunning, T.J., Crane, R.L., Klei, H.E., and Samulski, E.T., J. Polymer Sci., Polymer Chem. Ed., 32, 2039 (1994).Google Scholar
6. Tsai, M.L., Chen, S.H., and Jacobs, S.D., Appl. Phys. Lett., 54, 2395 (1989).Google Scholar
7. Natarajan, L.V., Tondiglia, V., Bunning, T.J., and Crane, R.L., and Adams, W.W., Adv. Materials for Optics and Electronics, 1, 293 (1992).Google Scholar
8. Pinsl, J., Brduchle, C., and Kreuzer, F.-H., J. Mol. Electronics, 3, 9 (1987).Google Scholar
9. Walba, D.M., Wand, M.D., Thurmes, W.N., Moray, K.M., and Arnett, K.E., Polymer Preprints, 34 (1), 697 (1993).Google Scholar
10. Anneser, H., Feiner, F., Petri, A., Brdiuchle, C., Leigeben, H., Weitzel, H P., Kreuzer, F.-H., Haak, O., and Boldt, P., Adv. Mater. 5, 556 (1993).Google Scholar
11. Shi, H. and Chen, S. H., Liquid Crystals, 17, 413 (1994).Google Scholar
12. Shi, H. and Chen, S. H., Liquid Crystals, 18, 733 (1995).Google Scholar
13. Shi, H. and Chen, S. H., Liquid Crystals, 19, 849 (1995).Google Scholar
14. Shi, H. and Chen, S. H., Liquid Crystals, 19, 785 (1995).Google Scholar
15. Chen, S.H., Mastrangelo, J.C., Shi, H., Bashir-Hashemi, A., Li, J., and Gelber, N., Macromolecules, 28, 7775 (1995).Google Scholar
16. Chen, S.H., Mastrangelo, J.C., Blanton, T.N., and Bashir-Hashemi, A., Liquid Crystals, submitted (1996).Google Scholar
17. Magill, J.H. and Plazek, D.J., J. Chem. Phys., 46, 3757 (1967).Google Scholar
18. Edwards, B.C. and Phillips, P.J., Polymer, 15, 351 (1974).Google Scholar
19. Dyreklev, P., Berggren, M., Ingands, O., Anderson, M.R., WennerstrÖm, O., and Hjertberg, T., Adv. Mater., 7, 43 (1995).Google Scholar
20. Era, M., Tsutsui, T., and Saito, S., Appl. Phys. Lett., 67, 2436 (1995).Google Scholar
21. Liissem, G., Festag, R., Greiner, A., Schmidt, C., Unterlechner, C., Heitz, W., Wendorff, J.H., Hopmeier, M., and Feldmann, J., Adv. Mater., 7, 923 (1995).Google Scholar