Investigation of Z-shaped Photoluminescence of Exciton in ZnO Single-crystal Microtubes

N. Liu, Y. R. Li, LH. Deng, Y. S. Sun, X. Zhou, H. J. Wu
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Abstract

The photoluminescence properties of ZnO single-crystal microtubes grown on Si substrate by hydrothermal method were investigated. An anomalous Z-shaped red-shift was found in the photoluminescence spectra, implying a new temperature switch characteristics. These results are considered to be from the competition among three kinds of excitons, which are localized excitons due to trapping in the intrinsic impurities and interface states at low temperatures; localized excitons and bound from thermally activated and transferred into bound states at intermediate temperatures; and, free excitons and unknown exciton complexes by thermal energy (kT) transfer part of the bound excitons into free excitons at high temperatures. As a result, free excitonsand interface states-excitons strongly overlaped.
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ZnO单晶微管中激子z形光致发光的研究
研究了水热法生长在Si衬底上的ZnO单晶微管的光致发光性能。在光致发光光谱中发现了一个异常的z型红移,这意味着一种新的温度开关特性。这些结果被认为是由于三种激子之间的竞争,它们是局域激子,由于在低温下被困在本征杂质和界面态中;局域激子从热激活状态结合到中温状态;自由激子和未知激子复合物在高温下通过热能(kT)将部分束缚激子转化为自由激子。结果,自由激子和界面态激子强烈重叠。
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