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Structure, morphology and optical behavior of Ni_(1-x)Co_xO thin films prepared by a modified sol-gel method

机译:改进的溶胶-凝胶法制备Ni_(1-x)Co_xO薄膜的结构,形貌和光学行为

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Nanocrystalline Ni_(1-x)Co_xO thin films (0 ≤ x ≤ 0.4) have been prepared on glass substrates using sol-gel/spin-coating technique. The effect of the concentration of cobalt ions on the structure, morphology and optical behavior of the doped NiO thin films are investigated by the X-ray diffractometer, scanning electron microscopy, Raman spectroscopy and spec-trophotometer. All films showed a single phase face centered cubic structure, implying the complete solubility of the Co ions into the NiO cubic crystal up to 40 at.%, for the first time. The texture coefficient revealed that the Co ions tend to force the NiO grains to grow along (200) direction. The Raman spectroscopy showed one longitudinal optical phonon mode (LO) at 518 cm~(-1) and two longitudinal optical phonons mode (2LO) at 1070 cm~(-1). The decrease of the intensity and the shift of the peak position of the two modes, indicating the scattering contribution of the LO-mode outside the center of Brillouin zone and the creation of oxygen vacancies due to the incorporated Co ions into the NiO cubic crystals. The Ni_(1-x)Co_xO thin films have shown high optical transparency around 80%. A decrease of the band gap energy of the NiO films from 3.69 eV to 3.41 eV was observed when the concentration of Co ions increased to 10 at.%, followed by an increase to 3.58 eV as the Co ions concentration increased to 40 at.%. The high optical conductivity and low dissipation factor of the developed Ni_(1-x)CO_xO thin films will open a new avenue for future applications in the optoelectronic devices such as reflectance mirror and display light shutter.
机译:使用溶胶-凝胶/旋涂技术在玻璃基板上制备了纳米晶Ni_(1-x)Co_xO薄膜(0≤x≤0.4)。通过X射线衍射仪,扫描电子显微镜,拉曼光谱和分光光度计研究了钴离子浓度对掺杂的NiO薄膜结构,形貌和光学行为的影响。所有薄膜都显示出单相面心立方结构,这意味着首次将Co离子完全溶解到NiO立方晶体中达到40 at。%。织构系数表明,Co离子趋向于迫使NiO晶粒沿(200)方向生长。拉曼光谱显示在518 cm〜(-1)处有一个纵向光学声子模(LO)和在1070 cm〜(-1)处有两个纵向光学声子模(2LO)。强度的降低和两种模式的峰位置的移动,表明LO模式在布里渊区中心之外的散射贡献以及由于将Co离子掺入NiO立方晶体而产生的氧空位。 Ni_(1-x)Co_xO薄膜显示出约80%的高光学透明性。当Co离子浓度增加到10 at。%时,观察到NiO薄膜的带隙能从3.69 eV减小到3.41 eV,然后随着Co离子浓度增加到40 at。%而增加到3.58 eV。 。已开发的Ni_(1-x)CO_xO薄膜的高光导率和低耗散因数将为光电子设备中的未来应用(例如反射镜和显示光闸)开辟新的途径。

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