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Persistent photoconductivity of ZnO

机译:ZnO的持续光电导

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Persistent photoconductivity is observed in ZnO single crystals and ceramics together with persistence of electron paramagnetic resonance (EPR) spectra of defects and impurity centers. It is shown that when the light is switched on and off the microwave conductivity detected from absorption of the microwave field is well correlated with the dc-conductivity measured with electrical contacts applied to the sample. The microwave photoconductivity arises together with light-induced EPR spectra and persists after switching off the light. Coexistence of the conductivity and EPR spectra shows that the photoexcited electrons cannot return back to paramagnetic centers. The persistent photoconductivity in ZnO ceramics is large in comparison with the effect observed in powders prepared from the same material and in ZnO single crystals. This suggests that surface conductivity is the dominant mechanism of persistent photoconductivity in ZnO.
机译:在ZnO单晶和陶瓷中观察到持续光电导性以及缺陷的缺陷和杂质中心的电子顺磁共振(EPR)光谱的持久性。结果表明,当光接通和关闭从微波场检测到的微波电导率,与用施加到样品的电触点测量的直流导电率良好相关。微波光电导性与光诱导的EPR光谱一起产生,并且在关闭光之后持续存在。电导率和EPR光谱的共存表明,光射电子不能返回到顺磁中心。与由相同材料制备的粉末和ZnO单晶中制备的粉末观察到的效果,ZnO陶瓷中的持续光电导性很大。这表明表面电导率是ZnO持续光电导的主要机理。

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