[1]
C. W. Tang, S.A. VanSlyke, Appl. Ohys. Lett., 51 (1987) 913.
Google Scholar
[2]
C. Adachi. S. Tokito, J. Tsutusi, S. Saito, Jpn. J. Appl. Phys., 27 (1988) 713.
Google Scholar
[3]
J. H. Burroughes, D. D. C. Bradley, A. R. Brown, R. N. Marks, K. Mackay, R. H. Friend, P. L. Burns, A. B. Homes. Nature, 347 (1990) 539.
Google Scholar
[4]
J. R. Sheats, H. Antoniadis, M. Hueschen, W. Leonard, J. Miller, R. Moon, D. Roitman, A. Stocking, Science, 273 (1996) 884.
DOI: 10.1126/science.273.5277.884
Google Scholar
[5]
H. Nakada, T. Tohma. Inorganic and Organic Electroluminescence, Wissenschaft-und-Technik-Verlag, Berlin, (1996) 385.
Google Scholar
[6]
S. –F. Liu, C. Seward, H. Aziz, N. –X. Hu, Z. Popovic, S. Wang, Organnometallics, 19 (2000) 5709.
Google Scholar
[7]
H. Schmidbaur, J. Lettenbauer, D. L. Wilkinson, G. Muller, O. Z. Kumberger, Naturforsch, 46B (1991) 901.
Google Scholar
[8]
(a) Anchi Yeh and T. R. Chen, Materials Lett., 59 (2005) 2911. (b) Anchi Yeh, Materials Lett., 59 (2005) 1811. (c) T-R Chen , Rong-Hong Chien , Ming-Shiun Jan, Anchi Yeh , Jhy-Der Chen. J.Organomet. Chem, 691, 2006, 799.(d) T-R Chen and Anchi Yeh, Tetrahedron Letters, (46) 2005, 1569.
DOI: 10.1016/j.matlet.2005.04.042
Google Scholar
[9]
S. -F. Liu, Q. Wu, H. L. Schmider, H. Aziz, N. –X. Hu, Z. Popovic, S. Wang, J. Am. Chem. Soc., 122 (2000) 3672.
Google Scholar
[10]
Q.Wu, M. Esteghamatian, N. –X. Hu, Z. D. Popovic, G. Enright, S. R. Breeze, S. Wang, Angew. Chem. Int. Ed., 38 (1999).
Google Scholar
[11]
Z. –K. Chen, H. Meng, Y. –H. Lai, W. Huang, Marcromolecules, 32 (1999) 4351.
Google Scholar
[12]
S. Tokito, H. Tanaka, K. Noda, A. Okada, Y. Taga, Appl. Phys. Lett., 70 (1997) 1929.
Google Scholar
[13]
M. Makowska-Janusik, J. Sanetra, H. Palmers, D. Bogdal, E. Gondek, I. V. Kityk, Materials Letters, 58 (2004) 555.
DOI: 10.1016/s0167-577x(03)00561-5
Google Scholar
[14]
Albert J. van Reenen, Lon J. Mathias, Liezel Coetzee, Polymer 45 (2004) 799.
Google Scholar