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Photoluminescence and polarized photodetection of single ZnO nanowires

机译:单个ZnO纳米线的光致发光和偏振光检测

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摘要

Single crystal ZnO nanowires are synthesized and configured as field-effect transistors. Photoluminescence and photoconductivity measurements show defect-related deep electronic states giving rise to green-red emission and absorption. Photocurrent temporal response shows that current decay time is significantly prolonged in vacuum due to a slower oxygen chemisorption process. The photoconductivity of ZnO nanowires is strongly polarization dependent. Collectively, these results demonstrate that ZnO nanowire is a remarkable optoelectronic material for nanoscale device applications.
机译:合成单晶ZnO纳米线并配置为场效应晶体管。光致发光和光电导率测量显示出与缺陷相关的深电子状态,从而引起绿红色发射和吸收。光电流的时间响应表明,由于氧气化学吸附过程较慢,在真空中电流衰减时间显着延长。 ZnO纳米线的光电导性与偏振密切相关。总而言之,这些结果表明,ZnO纳米线是用于纳米级器件应用的卓越光电材料。

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