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镁掺杂对 ZnO 薄膜形貌和光学性能的影响及其在增强氢气传感中的应用。

Influence of Mg doping on the morphology and optical properties of ZnO films for enhanced H₂ sensing.

机构信息

Research Department of Physics, Bishop Heber College, Tiruchirappalli, 620 017, Tamilnadu, India.

出版信息

Microsc Res Tech. 2013 Nov;76(11):1118-24. doi: 10.1002/jemt.22274. Epub 2013 Aug 12.

Abstract

Highly oriented ZnO and Mg doped ZnO thin films were fabricated on Al2 O3 substrate by sputtering at room temperature. The effect of Mg doping on the structural, optical, and morphological properties of ZnO film was investigated. The intensity of (002) peak in X-ray diffraction measurements revealed the influence of Mg doping on the crystallinity and orientation of ZnO film. Photoluminescence (PL) results show that the Ultraviolet (UV) emission peak was shifted to lower wavelength side for Mg:ZnO film indicating the possibility for quantum confinement. UV-vis-NIR optical absorption revealed an improvement in optical transmittance from 70 to 85%, and corresponding optical band gap from 3.25 to 3.54 eV. Atomic force microscope (AFM) images revealed the nano-size particulate microstructure of the films. The surface topography of Mg doped ZnO film confirmed decreased grain size with large surface roughness and increased surface area, favorable for sensing. Pure ZnO and Mg doped ZnO film were used as active layer and tested for its sensing performance to hydrogen. Compared to undoped ZnO, 22 at.% Mg doped ZnO film showed much higher sensor response to H2 at a concentration as low as 200 ppm and at a lower operating temperature of 180°C. A linear sensor response was observed for H2 concentration in the range of 100-500 ppm.

摘要

在室温下通过溅射法在 Al2O3 衬底上制备了高度取向的 ZnO 和 Mg 掺杂 ZnO 薄膜。研究了 Mg 掺杂对 ZnO 薄膜结构、光学和形貌特性的影响。X 射线衍射测量中(002)峰的强度揭示了 Mg 掺杂对 ZnO 薄膜结晶度和取向的影响。光致发光(PL)结果表明,对于 Mg:ZnO 薄膜,紫外(UV)发射峰向低波长方向移动,表明存在量子限制的可能性。紫外-可见-近红外(UV-vis-NIR)光学吸收显示光学透过率从 70%提高到 85%,相应的光学带隙从 3.25 eV 降低到 3.54 eV。原子力显微镜(AFM)图像显示了薄膜的纳米颗粒微观结构。Mg 掺杂 ZnO 薄膜的表面形貌证实了晶粒尺寸减小,表面粗糙度增大,表面积增大,有利于传感。纯 ZnO 和 Mg 掺杂 ZnO 薄膜被用作活性层,并对其对氢气的传感性能进行了测试。与未掺杂 ZnO 相比,在低至 200 ppm 的浓度和低至 180°C 的工作温度下,22at.% Mg 掺杂 ZnO 薄膜对 H2 表现出更高的传感器响应。在 100-500 ppm 的 H2 浓度范围内观察到线性传感器响应。

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