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Fabrication of p-Type ZnO:N Films by Oxidizing Zn3N2 Films in Oxygen Plasma at Low Temperature

机译:低温氧化氧等离子体中的Zn3N2薄膜制备p型ZnO:N薄膜

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摘要

The oxygen vacancy (VO) is known as the main compensation center in p-type ZnO, which leads to the difficulty of fabricating high-quality p-type ZnO. To reduce the oxygen vacancies, we oxidized Zn3N2 films in oxygen plasma and successfully prepared p-type ZnO:N films at temperatures ranging from room temperature to 300 °C. The films were characterized by X-ray diffraction (XRD), non-Rutherford backscattering (non-RBS) spectroscopy, X-ray photoelectron spectroscopy, photoluminescence spectrum, and Hall Effect. The results show that the nitrogen atoms successfully substitute the oxygen sites in the ZnO:N films. The film prepared at room temperature exhibits the highest hole concentration of 6.22 × 1018 cm−3, and the lowest resistivity of 39.47 Ω∙cm. In all ZnO:N films, the VO defects are reduced significantly. At 200 °C, the film holds the lowest value of VO defects and the strongest UV emission. These results imply that oxygen plasma is very efficient in reducing VO defects in p-type ZnO:N films, and could greatly reduce the reaction temperature. This method is significant for the development of ZnO-based optoelectronic devices.
机译:氧空位(VO)被称为p型ZnO的主要补偿中心,这导致难以制造高质量的p型ZnO。为减少氧空位,我们在氧等离子体中氧化了Zn3N2膜,并成功地在室温至300°C的温度范围内制备了p型ZnO:N膜。膜的特征在于X射线衍射(XRD),非卢瑟福背散射(non-RBS)光谱,X射线光电子能谱,光致发光光谱和霍尔效应。结果表明,氮原子成功取代了ZnO:N薄膜中的氧位。在室温下制备的膜的最高空穴浓度为6.22×10 18 cm -3 ,最低电阻率为39.47Ω∙cm。在所有的ZnO:N薄膜中,VO缺陷都大大减少了。在200°C下,该膜具有最低的VO缺陷值和最强的UV辐射。这些结果暗示氧等离子体在减少p型ZnO:N膜中的VO缺陷方面非常有效,并且可以大大降低反应温度。该方法对于基于ZnO的光电器件的开发具有重要意义。

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