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Fizika i Tekhnika Poluprovodnikov, 2018 Volume 52, Issue 7, Pages 757–762 (Mi phts5786)

This article is cited in 4 papers

Micro- and nanocrystalline, porous, composite semiconductors

Photoluminescence properties of ZnO nanorods synthesized by different methods

S. S. Kurbanova, Sh. Z. Urolova, Z. Sh. Shaymardanova, H. D. Chob, T. W. Kangb

a Institute of Ion-Plasma and Laser Technologies, Uzbekistan Academy of Sciences, Tashkent
b Исследовательский центр квантово-функциональных полупроводников, Донгукский университет, Сеул, Республика Корея

Abstract: The photoluminescence properties of ZnO nanorods synthesized by the low-temperature hydrothermal and high-temperature vapor-phase methods are studied. At room temperature, the photoluminescence of ZnO nanorods synthesized by the high-temperature vapor-phase method exhibits only one highintensity ultraviolet peak at a wavelength of 382 nm. At the same time, the luminescence spectra of ZnO nanorod samples grown by the low-temperature hydrothermal method, but with the use of different chemical reagents exhibit, apart from the ultraviolet peak, a violet band or a yellow-orange band at $\sim$401 and $\sim$574 nm, respectively. The violet luminescence band is attributed to defects or zinc vacancy complexes, and the yellow-orange band to defects associated with interstitial oxygen.

Received: 28.06.2017
Accepted: 29.11.2017

DOI: 10.21883/FTP.2018.07.46048.8673


 English version:
Semiconductors, 2018, 52:7, 897–901

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