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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Visible Light Water Splitting via Oxidized TiN Thin Films
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Visible Light Water Splitting via Oxidized TiN Thin Films

机译:氧化的TiN薄膜可见的水分解

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Thin films of TiN were prepared via RF magnetron reactive sputtering at various deposition pressures. The characteristics of the plasmas were measured by optical emission spectroscopy to optimize the conditions for the deposition of TiN coatings. After deposition, the thin films were annealed in a closed furnace at several different temperatures, and revealed the formation of different phases of TiO2. The resulting TiN/TiO2 thin films showed drastic changes in their crystal structure, optical properties, and photo-electrochemical performance. By examining how the deposition pressure and postdeposition annealing conditions affected the TiN film structure and performance, samples were prepared to optimize visible light absorption and activity. A model for the oxidation process was proposed which described the structural change from TiN to TiO2 through optical, morphological, and crystalline characterization. This study has systematically shown the ability to tailor the optical, crystalline, and photoactive properties of TiO2 by tailoring the intrinsic properties of TiN thin films and subsequent annealing. These results can be utilized for many solar driven optoelectronic devices.
机译:通过RF磁控反应溅射在各种沉积压力下制备TiN薄膜。通过光学发射光谱法测量等离子体的特性,以优化TiN涂层的沉积条件。沉积后,将薄膜在密闭炉中在几个不同的温度下退火,并揭示了TiO2不同相的形成。所得的TiN / TiO 2薄膜在其晶体结构,光学性质和光电化学性能方面显示出剧烈的变化。通过检查沉积压力和沉积后退火条件如何影响TiN膜的结构和性能,制备了样品以优化可见光的吸收和活性。提出了一种氧化过程模型,该模型通过光学,形态和晶体表征描述了从TiN到TiO2的结构变化。这项研究系统地显示了通过调整TiN薄膜的固有特性并随后进行退火来调整TiO2的光学,晶体和光敏特性的能力。这些结果可用于许多太阳能驱动的光电设备。

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