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Optical Property of Sb-doped SnO_2 Nanoparticle Thin Films by Sparking Process

机译:SB掺杂SnO_2纳米粒子薄膜的光学性能通过火花工艺

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Undoped and Sb doped SnO_2 nanoparticle thin films were synthesized by sparking process. The nanoparticles were continuously deposited onto the substrate by varying the number of sparking cycles ranging from 10-30 and the deposited film were subsequently annealed at 500°C in tube furnace under air atmosphere for 1h. The effect of Sb doped SnO_2 nanoparticles thin film on their structure and optical characteristics were investigated. The optical properties of the nanoparticles thin films have been studied from transmission spectra. An average transmittance of the thin films decrease from 70% to 50% when the doping level increased from 0 to 7% Sb doped SnO_2. Opitical band gap energy of thin films were found to vary in range of 3.85-3.89 eV which the energy band gap decrease with the increasing Sb doping concentration. From the experimental data, the reduction of optical transmittance spectra in the antimony doped SnO_2 thin films make it suitable for generation of window layer coating and prevent unwanted absorption in UV range.
机译:通过火花工艺合成未掺杂和Sb掺杂的SnO_2纳米颗粒薄膜。通过改变从10-30的火花循环的数量将纳米颗粒连续沉积在基材上,并且随后在空气气氛下在500℃下在500℃下退火沉积的薄膜1小时。研究了Sb掺杂SnO_2纳米颗粒薄膜对其结构和光学特性的影响。已经从透射光谱研究了纳米颗粒薄膜的光学性质。当掺杂水平从0到7%Sb掺杂SnO_2增加时,薄膜的平均透射率降低了70%至50%。发现薄膜的热带间隙能量在3.85-3.89eV的范围内变化,能量带隙随着Sb掺杂浓度的增加而降低。从实验数据中,锑掺杂SnO_2薄膜中的光学透射谱减小使其适用于产生窗层涂层并防止UV范围内的不需要的吸收。

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