Hostname: page-component-77c89778f8-sh8wx Total loading time: 0 Render date: 2024-07-18T19:33:50.548Z Has data issue: false hasContentIssue false

Energy Transfer Studies of Polyphenylene-Type Polymers to a Series of Dyes.

Published online by Cambridge University Press:  15 February 2011

Sean O. Clancy
Affiliation:
Loker Hydrocarbon Research Institute, Department of Chemistry, University of Southern California, University Park, 837 Bloom Walk, Los Angeles, California 90089-1661.
Asanga B. Padmaperuma
Affiliation:
Loker Hydrocarbon Research Institute, Department of Chemistry, University of Southern California, University Park, 837 Bloom Walk, Los Angeles, California 90089-1661.
Aaron W. Harper
Affiliation:
Loker Hydrocarbon Research Institute, Department of Chemistry, University of Southern California, University Park, 837 Bloom Walk, Los Angeles, California 90089-1661.
Get access

Abstract

Energy transfer from two polyphenylene-type polymers to a series of organic dyes was studied. One of the polymers was synthesized via Suzuki coupling of 1,4-phenyldiboronic acid with 1,4-dibromobenzene to obtain polyphenylene. The other polymer was a polybenzophenone generated by a nickel-mediated coupling of 2,5-dichloro-4'-methylbenzophenone. These polymers were used as the energy donors. A variety of Coumarins and other dyes were used as acceptors. Photophysical data and energy transfer parameters were determined.

Type
Research Article
Copyright
Copyright © Materials Research Society 2003

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

1. Förster, T., Ann. Phys. (Leipzig) 2, 55, 1948. Translated by R. S. Knox.Google Scholar
2. Lakowicz, J. R., Principles of Fluorescence Spectroscopy, 2nd ed., Kluwer Academic / Plenum Publishers, New York, NY (1999).Google Scholar
3. Brunner, K., van Haare, J. A. E. H., Langeveld-Voss, B. M. W., Schoo, H. F. M., Hofstraat, J. W., and Dijken, A. van, J. Phys. Chem. B 106, 6834 (2002).Google Scholar
4. Haring, P. Bolivar, Wegmann, C., Kersting, R., Deussen, M., Lemmer, U., Mahrt, R. F., Bässler, H., Göbel, E. O., Kurz, H., Chem. Phys. Lett. 245, 534 (1995).Google Scholar
5. Kido, J., Shionoya, H., Nagai, K., Appl. Phys. Lett. 67, 2281 (1995).Google Scholar
6. Lemmer, U., Ochse, A., Deussen, M., Mahrt, R. F., Göbel, E. O., Bässler, H., Bolivar, P. Haring, Wegmann, C., Kurz, H., Synth. Met. 78, 289 (1996).Google Scholar
7. Brütting, W., Berleb, S., Egerer, G., Schwoerer, M., Wehrmann, R., Elschner, A., Synth. Met. 91, 325 (1997).Google Scholar
8. Jang, M. S., Song, S. Y., Shim, H.K., Zyung, T., Jung, S. D., Do, L.M., Synth. Met. 91, 317 (1997).Google Scholar
9. Hu, B., Zhang, N., Karasz, F. E., J. Appl. Phys. 83, 6002 (1998).Google Scholar
10. Shoustikov, A. A., You, Y., Thompson, M. E., IEEE J. Sel. Top. Quantum Electron. 4, 3 (1998).Google Scholar
11. Dicker, G., Hohenau, A., Graupner, W., Tasch, S., Graupner, M., Hermetter, A., Schlicke, B., Schulte, N., Schlüter, A. D., Scherf, U., Müllen, K., Leising, G., Synth. Met. 102, 873 (1999).Google Scholar
12. List, E. J. W., Creely, C., Leising, G., Schulte, N., Schlüter, A. D., Scherf, U., Müllen, K., Graupner, W., Chem. Phys. Lett. 325, 132 (2000).Google Scholar
13. Virgili, T., Lidzey, D. G., Bradley, D. D. C., Adv. Mater. 12, 58 (2000).Google Scholar
14. Udea, M., Seino, Y., and Sugiyama, J., Polym. J. 215, 12, 1319 (1993).Google Scholar
15. Pasquale, A. J. and Sheares, V.V., J. Polym. Sci. Pol. Chem. 36, 14, 2611 (1998).Google Scholar
16. Hu, Q. S., Huang, W. S., Vitharana, D., Zheng, X. F., Pu, L., J. Am. Chem. Soc. 119, 12454 (1997).Google Scholar
17. Turro, N. J., Modern Molecular Photochemistry, University Science Books, Sausalito, CA (1991).Google Scholar
18. Du, H., Fuh, R. A., Li, J., Corkan, A., Lindsey, J. S., Photochemistry and Photobiology 68, 141 (1998).Google Scholar
19. Hsiao, J.-S., Krueger, B. P., Wagner, R.W., Johnson, T. E., Delaney, J. K., Mauzerall, D. C., Fleming, G. R., Lindsey, J. S., Bocian, D. F., Donohoe, R. J., J. Am. Chem. Soc. 118, 11181 (1996).Google Scholar