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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Room temperature synthesis of nanocrystalline anatase sols and preparation of uniform nanostructured TiO_2 thin films: Optical and structural properties
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Room temperature synthesis of nanocrystalline anatase sols and preparation of uniform nanostructured TiO_2 thin films: Optical and structural properties

机译:室温合成纳米晶锐钛矿溶胶和制备均匀的纳米TiO_2薄膜:光学和结构性质

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Transparent TiO_2 thin films were deposited on soda-lime glass substrates via the sol-gel method using a nanocrystalline TiO_2 sol solution prepared at room temperature employing the dip-coating method. The effects of pH on crystallinity, particle size and stability of the synthesized TiO_2 sols were investigated, systematically. TiO_2 thin films were thickened by means of a sequential dip-coating process. The TiO _2 films were transparent and exhibited proper adherence. The effects of thickness and annealing temperature on the structural and optical properties of the thin films were evaluated. The prepared powder was crystalline without any thermal treatment. The crystallite size of the particles (anatase) was in the range 4.2-12.1 nm depending on the initial pH value. Although only the anatase phase was observed at room temperature and 400 °C, a further increase in annealing temperature up to 700 °C resulted in the formation of the rutile phase. Even at high annealing temperatures, fairly smooth and homogeneous surfaces with no cracks and pores were observed. It was demonstrated that the films were transparent in the visible region with characteristic absorption in the UV region. Band gap of the as-deposited film was estimated to be 3.34 eV and was found to decrease with increasing annealing temperature.
机译:使用在室温下采用浸涂法制备的纳米晶TiO_2溶胶溶液,通过溶胶-凝胶法将透明的TiO_2薄膜沉积在钠钙玻璃基板上。考察了pH对合成TiO_2溶胶结晶度,粒径和稳定性的影响。 TiO_2薄膜通过连续浸涂工艺增厚。 TiO _2薄膜是透明的,并表现出适当的粘附性。评价了厚度和退火温度对薄膜的结构和光学性质的影响。所制备的粉末是结晶,未经任何热处理。取决于初始pH值,颗粒(锐钛矿)的微晶尺寸在4.2-12.1nm的范围内。尽管在室温和400°C下仅观察到锐钛矿相,但退火温度进一步升高至700°C导致金红石相的形成。即使在较高的退火温度下,也观察到相当光滑且均匀的表面,没有裂纹和孔。证明了膜在可见光区域是透明的,在紫外光区域具有特征吸收。所沉积的膜的带隙估计为3.34eV,并且发现其随着退火温度的升高而减小。

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