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Linear Electrogyration Study on Eu:In2O3 Nanocrystals

Published online by Cambridge University Press:  31 January 2011

Zhaoyong Sun
Affiliation:
zsun1@binghamton.edu, State University of New York at Binghamton, Binghamton, New York, United States
Ivan V Kityk
Affiliation:
kityk@wp.pl, Technical University Czestochowa, Czestochowa, Poland
Jiye Fang
Affiliation:
jfang@binghamton.edu, United States
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Abstract

Colloidal Europium-doped In2O3 nanocrystals were successfully prepared in a noncoordinating solvent using indium (III) and europium (III) acetates as precursors. The concentration of doped europium was varied up to 2.88 at%. Linear electrogyration induced by coherent circularly-polarized light was observed from samples in which europium-doped In2O3 nanocrystals were embedded in photopolymer oligoethracryalte matrices. The result on ˜2.5 at% europium-doped sample shows that the maximal linear electrogyration could reach to ˜12 deg./mm at an electric field of 120V/cm for He-Ne laser.

Type
Research Article
Copyright
Copyright © Materials Research Society 2010

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References

[1] Sun, B., Yi, G., Chen, D., Zhou, Y., Cheng, J., J. Mater. Chem. 12 (4), 1194 (2002).Google Scholar
[2] Wang, Z., Zhang, L. Z., Xiong, Y., Tang, G., Zhang, G., Chen, W., J. Chem. Research. (S) 2002 (7), 348 (2002).Google Scholar
[3] Liu, Y., Luo, W., Li, R., Liu, G., Antonio, M. R., Chen, X., J. Phys. Chem. C 112 (3), 686 (2008).Google Scholar
[4] Raola, O. E., Strouse, G. F., Nano Lett. 2 (2), 1443 (2002).Google Scholar
[5] Kityk, I.V., Nyk, M., Strek, W., Jablonski, J.M., Misiewicz, J., J. Phys.: Condens. Matter. 17 (34), 5235 (2005).Google Scholar
[6] Uesu, Y., Sonmachi, H., Kobayashi, J., Phys. Rev. Lett. 42 (21), 1427 (1979).Google Scholar
[7] Weber, H-J., et al, J. Phys.: Condens. Matter. 12 (7), 1485 (2000).Google Scholar
[8] Vlokh, R., Kostyrko, M., Kruchkevych, V., Ukr. J. Phys. Opt. 2, 86 (2001).Google Scholar
[9] Liu, Q., Lu, W., Ma, A., Tang, J., Lin, J., Fang, J., J. Am. Chem. Soc. 127 (15), 5276 (2005).Google Scholar
[10] Kityk, I.V., Mervinskii, R.I., Kasperczyk, J., Jossi, S., Mater. Lett. 27 (4-5), 233 (1996).Google Scholar
[11] Antonyuk, B.P., Novikova, N.N., Didenko, N.V., Aktsipterov, O.A., Phys. Lett. A 287 (1-2), 161 (2001).Google Scholar
[12] Balakirev, M.K., Kityk, I.V., Smirnov, V.A., Vostrikova, L.I., Ebothe, J., Phys. Rev. A 67 (2), 023806 (2003).Google Scholar