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Annealing effect on the photoluminescence characteristics of ZnO-nanowires and the improved optoelectronic characteristics of p-NiO-ZnO nanowire UV detectors

机译:退火对ZnO纳米线的光致发光特性的影响以及p-NiO / n-ZnO纳米线紫外线探测器的改进的光电特性

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Transparent ultraviolet (UV) detectors with nanoheterojunctions (NHJs) of p-type NiO and n-type ZnO nanowires (ZnO-NWs) were successfully fabricated using a DC sputtering system and a hydrothermal process, respectively. After annealing in nitrogen ambient, the near-band-edge emission to deep level emission ratio (NBE/DLE) of ZnO-NWs gradually increased as the temperature increased and reached a maximum of 28.9 at a temperature setting of 500 degrees C. In contrast, after annealing in oxygen atmosphere, the NBE/DLE of ZnO-NWs initially increased from 1.2 to 5.9 and then decreased to 3.2. At a reverse bias of 2V, the devices with the 500-degrees C-N-2-annealed ZnO-NWs exhibited better sensitivity (J(UV)/J(Dark) = 5.65; J(Visible)/J(Dark) = 1.35) to UV light (365 nm, 0.3 mW/cm(2)) than those with the as-grown ZnO-NWs (J(UV)/J(Dark) = 4.98; J(Visible)/J(Dark) = 3.82) because the structural defects in ZnO-NWs were effectively eliminated after annealing in nitrogen ambient at 500 degrees C. (C) 2015 The Japan Society of Applied Physics
机译:使用直流溅射系统和水热工艺分别成功地制造了具有p型NiO和n型ZnO纳米线(ZnO-NWs)的纳米异质结(NHJs)的透明紫外(UV)检测器。在氮气环境中退火后,ZnO-NW的近带边发射与深能级发射比(NBE / DLE)随着温度的升高而逐渐增加,并在500摄氏度的温度下达到最大值28.9。在氧气气氛中退火后,ZnO-NWs的NBE / DLE最初从1.2增加到5.9,然后下降到3.2。在2V的反向偏压下,具有500度CN-2-退火ZnO-NW的器件表现出更好的灵敏度(J(UV)/ J(Dark)= 5.65; J(Visible)/ J(Dark)= 1.35)紫外光(365 nm,0.3 mW / cm(2))比生长的ZnO-NWs(J(UV)/ J(Dark)= 4.98; J(Visible)/ J(Dark)= 3.82)因为在氮气氛中在500摄氏度下退火后,ZnO-NWs的结构缺陷得以有效消除。(C)2015年日本应用物理学会

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