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The influence on intensity ratio of peak emission between recombination of free-excitons and deep-defect for ZnO nanostructure evolution from nanorods to nanotubes

机译:从纳米杆向纳米管中重组自由激子重组与深缺陷之间峰发射强度比的影响

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Zinc oxide (ZnO) nanorods are grown by a hydrothermal method. The morphology was changed from nanorod to nanotube via a well-controlled chemical aqueous etching process with appropriate amount potassium chloride (KCl). SEM analyses show that the ZnO nanorods can be changed to nanotubes when the chemical etching process was adopted with appropriate KCl concentration and etching time. Uniform ZnO nanotube can be achieved formed when the ZnO nanorods were immersed in 4M KCl aqueous with 13 hrs. The luminescence character of nanorods and nanotubes were investigated by the temperature dependence photoluminescence spectra. Two peaks (excitonic peak and deep level emission) were observed in both morphologies. However, the excitonic peak intensity (EI) and defect related emission peak intensity (DI) ratio of ZnO nanotubes increase when the etching time increases. The intensity ratio variation of EI to DI maybe can be attributed to the surface state of ZnO are increased and oxygen defects of ZnO are decreased in the etching process. The potential application of ZnO nanotubes is demonstrated.
机译:氧化锌(ZnO)纳米棒通过水热法生长。通过具有适当量的氯化钾(KCl),通过良好控制的化学水性蚀刻方法从纳米棒转变为纳米管。 SEM分析表明,当用适当的KCl浓度和蚀刻时间采用化学蚀刻过程时,ZnO纳米棒可以改变为纳米管。当将ZnO纳米棒浸入4M KCl水溶液中,可以在用13小时内浸入4M KCl水溶液中形成均匀的ZnO纳米管。通过温度依赖性光致发光光谱研究了纳米棒和纳米管的发光特性。在两种形态中观察到两个峰(激发峰峰和深度发射)。然而,当蚀刻时间增加时,激发力峰强度(EI)和缺陷相关发射峰强度(DI)比增加。 EI至Di的强度比变异可能归因于ZnO的表面状态增加,并且在蚀刻工艺中降低了ZnO的氧缺陷。证明了ZnO纳米管的潜在应用。

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