标题: | 藉由大气电浆在不同状态下沉积氧化锌掺杂镓薄膜其光电特性与材料分析之研究 Study on the opto-electrical characterization and material analysis of gallium doped zinc oxide film deposited by atmosphere-pressure plasma jet |
作者: | 陈伟强 Chen, Wei-Chiang 张国明 Chang, Kow-Ming 电机学院微电子奈米科技产业专班 |
关键字: | 氧化锌;透明导电膜;大气电浆;GZO;TCO;ZnO;APPCVD;APPJ |
公开日期: | 2010 |
摘要: | 本研究利用常压电浆化学气相沉积系统在加热机板上来沉积掺杂镓的氧化锌薄膜(GZO),藉由改变镓掺杂浓度、基板温度、基板到喷嘴出口距离、扫描次数、载入气体流量和硝酸锌浓度等参数,探讨制程参数对于其物理特性的影响,利用X光绕射分析仪、X光电子能谱、光激光谱仪、扫描式电子显微镜、原子力显微镜、分光光谱仪、霍尔量测和四点探针等仪器来观察GZO薄膜的结构、表面形貌和光电特性,并藉由其分析结果定义出最佳制程条件之GZO透明导电膜。 由XRD中可知薄膜为多晶型态且为六方最密堆积的柱状结构,主要的晶向为(002),最佳的试片电阻率为8x10-4 cm,且在可见光区段透光率能超过80%以上,这样的结果代表利用常压电浆化学气相沉积系统来沉积掺杂镓的氧化锌薄膜可以被应用来当作光电元件的透明电极。 Ga doped Zinc oxide (GZO) films have been deposition by the atmospheric pressure plasma chemical vapor deposition (APPCVD) onto preheated glass substrates using Zn(NO3)2 and Ga(NO3)2 as precursors for Zn and Ga ions, respectively. The effect of the Ga dopant concentration , substrate temperature, gap distance, scan times, carrier gas flow rate, and Zn(NO3)2 concentration on the physical properties of the ZnO and GZO thin films was analyzed. The effect on the structural, morphological, optical, optical and electrical properties of APPCVD ZnO thin films were investigated using x-ray diffraction (XRD), x-ray photoelectron spectroscopy (XPS), photoluminescence (PL), scanning electron microscopy (SEM), atomic force microscopy (AFM), spectrophotometer, Hall measurement and four point probe. According to the above analysis the best deposition parameters of GZO thin film can be determined. XRD studies reveal that films are polycrystalline with hexagonal (wurtzite) crystal structure. The thin films were mainly oriented along the (002) plane. The best sample with a resistivity of 8x10-4 cm and a transmittance of over 80% in visible region was achieved. This result makes APPCVD GZO thin film potentially applicable as transparent electrode in opto-electrical devices. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079794501 http://hdl.handle.net/11536/46604 |
显示于类别: | Thesis |
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