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Featured researches published by Yichun Liu.


Journal of Applied Physics | 2001

Photoluminescence properties of MgxZn1-xO alloy thin films fabricated by the sol-gel deposition method

Dongxu Zhao; Yichun Liu; Dezhen Shen; Youming Lu; Jiying Zhang; Xiwu Fan

The photoluminescence properties of MgxZn1−xO alloy thin films fabricated by the sol-gel deposition method were studied. The Mg2+ content in the films was up to 0.36 and they had the ZnO wurtzite structure. The band gap of the films can be controlled between 3.40 and 3.93 eV by adjusting the Mg2+ proportions. Transmittance spectroscopy was used to characterize the excitonic structure of the alloys, which the excitonic character is clearly visible at room temperature. The intense ultraviolet photoluminescence was observed at room temperature. This emission is indicative of the excitonic nature of the material.


Journal of Applied Physics | 2003

Structure and photoluminescence properties of ZnO microrods

Dongxu Zhao; Yichun Liu; Dezhen Shen; Youming Lu; Ligong Zhang; Xiwu Fan

ZnO microrods (whiskers) were fabricated by a simple thermal oxidation method. The morphologies of the samples were detected by the scanning electron microscope, which showed the ZnO microrods were about 30 μm long with a diameter of 1–2 μm. In the photoluminescence (PL) spectra, only the exciton related emission bands in the ultraviolet region could be obtained at room temperature. And, a new emission band due to the exciton–exciton collision process was observed at the low energy side of the free exciton emission under the excitation intensity of 2.1 kW/cm2. This emission band increased nonlinearly. When the excitation intensity was increased above 16 kW/cm2 some fine structures could also be seen clearly in the PL spectra. These fine structures originated from the cavity modes of the Fabry–Perot etalon.


Journal of Crystal Growth | 2003

The dependence of emission spectra of rare earth ion on the band-gap energy of MgxZn1-xO alloy

Dongxu Zhao; Yichun Liu; Dezhen Shen; Jiying Zhang; Youming Lu; Xiwu Fan

Abstract Rare-earth (RE) Tb3+ ion doped ZnO and Mg0.15Zn0.85O thin films were successfully fabricated by the sol–gel deposition method. The Tb3+ ion was substituted for the Zn2+ ion in the host material, as revealed by X-ray diffraction and optical absorption spectra. The cathodoluminescence properties of the doped samples were also studied. The RE3+ luminescence mechanism is discussed.


Journal of Sol-Gel Science and Technology | 2002

Optical properties of MgxZn1-xO polycrystalline thin films prepared by sol-gel deposition method

Dongxu Zhao; Yichun Liu; Dezhen Shen; Youming Lu; Jiying Zhang; Xiwu Fan

The MgxZn1−xO alloy thin films were synthesized on Si and quartz substrates by the sol-gel deposition method. The transmittance and cathodoluminescence spectra of the Mg0.05Zn0.95O and Mg0.15Zn0.85O nanoparticle films were obtained at room temperature. It was found that the bandgap of Mg0.05Zn0.95O and Mg0.15Zn0.85O films is as large as 3.72 eV and 3.79 eV, respectively. The ultraviolet emission peaks are located at 376 nm and 370 nm, respectively, for the samples annealed at 600°C. When the annealing temperature is elevated to 1000°C, the band-gap decreases to 3.42 eV and an emission line related to the deep-level defect appears at 500 nm. The mechanism behind these phenomena is discussed.


Journal of Physics: Condensed Matter | 2003

Photoluminescence properties of ZnO films grown on InP by thermally oxidizing metallic Zn films

Shijian Chen; Yichun Liu; Jiying Zhang; Youming Lu; Dezhen Shen; Xiwu Fan

Photoluminescence (PL) properties of ZnO films grown on (001) InP substrates by thermal oxidization of metallic Zn films, in which oxygen vacancies and interstitial Zn ions are compensated by P ions diffusing from (001) InP substrates, are investigated. X-ray diffraction spectra indicate that P ions have diffused into the Zn films and chemically combined with Zn ions to form Zn3P2. Intense free exciton emission dominates the PL spectra of ZnO films with very weak deep-level emission. Low-temperature PL spectra at 79 K are dominated by neutral-donor bound exciton emission at 3.299 eV (I4) with a linewidth of 17.3 meV and neutral-acceptor bound exciton emission at 3.264 eV. The free exciton emission increases with increasing temperature and eventually dominates the emission spectrum for temperature higher than 170 K. Furthermore, the visible emission around 2.3 eV correlated with oxygen deficiencies and interstitial Zn defects was quenched to a remarkable degree by P diffusing from InP substrates.


Chemical Physics Letters | 2004

Temperature-dependent growth mode and photoluminescence properties of ZnO nanostructures

Dongxu Zhao; Caroline Andreazza; Pascal Andreazza; Jiangang Ma; Yichun Liu; Dezhen Shen


Chemical Physics Letters | 2005

Buffer layer effect on ZnO nanorods growth alignment

Dongxu Zhao; Caroline Andreazza; Pascal Andreazza; Jiangang Ma; Yichun Liu; Dezhen Shen


Journal of Crystal Growth | 2002

Structural and optical properties of MgxZn1-xO thin films prepared by the sol-gel method

Dongxu Zhao; Yichun Liu; Dezhen Shen; Youming Lu; Jiying Zhang; Xiwu Fan


Journal of Crystal Growth | 2006

ZnO hexagonal prisms grown onto p-Si (111) substrate from poly (vinylpyrrolidone) assisted electrochemical assembly

Y.N. Liu; Yichun Liu; Jiying Zhang; Youming Lu; Dezhen Shen; Xiwu Fan


Journal of Crystal Growth | 2003

Effects of thermal treatment on the properties of ZnO films deposited on MgO-buffered Si substrates

Shijian Chen; Yichun Liu; J. Ma; Y.M. Lu; Jiying Zhang; Dezhen Shen; Xiwu Fan

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Dezhen Shen

Chinese Academy of Sciences

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Xiwu Fan

Chinese Academy of Sciences

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Jiying Zhang

Chinese Academy of Sciences

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Youming Lu

Chinese Academy of Sciences

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Dongxu Zhao

Chinese Academy of Sciences

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Shijian Chen

Northeast Normal University

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Jiangang Ma

Chinese Academy of Sciences

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Y.M. Lu

East China University of Science and Technology

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Y.N. Liu

Chinese Academy of Sciences

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Zhenzhong Zhang

Chinese Academy of Sciences

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