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Electrical and Optical Properties of Fluorine Doped Tin Oxide Thin Films Prepared by Magnetron Sputtering

机译:磁控溅射氟掺杂氧化锡薄膜的电学和光学性质

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Fluorine doped tin oxide (FTO) coatings have been prepared using the mid-frequency pulsed DC closed field unbalanced magnetron sputtering technique in an Ar/O2 atmosphere using blends of tin oxide and tin fluoride powder formed into targets. FTO coatings were deposited with a thickness of 400 nm on glass substrates. No post-deposition annealing treatments were carried out. The effects of the chemical composition on the structural (phase, grain size), optical (transmission, optical band-gap) and electrical (resistivity, charge carrier, mobility) properties of the thin films were investigated. Depositing FTO by magnetron sputtering is an environmentally friendly technique and the use of loosely packed blended powder targets gives an efficient means of screening candidate compositions, which also provides a low cost operation. The best film characteristics were achieved using a mass ratio of 12% SnF2 to 88% SnO2 in the target. The thin film produced was polycrystalline with a tetragonal crystal structure. The optimized conditions resulted in a thin film with average visible transmittance of 83% and optical band-gap of 3.80 eV, resistivity of 6.71 × 10?3 Ω·cm, a carrier concentration (Nd) of 1.46 × 1020 cm?3 and a mobility of 15 cm2/Vs.
机译:氟掺杂的氧化锡(FTO)涂层是在Ar / O2气氛中使用中频脉冲DC封闭场不平衡磁控溅射技术制备的,其中使用了形成目标的氧化锡和氟化锡粉末的混合物。 FTO涂层以400 nm的厚度沉积在玻璃基板上。没有进行沉积后退火处理。研究了化学成分对薄膜的结构(相,晶粒尺寸),光学(透射率,带隙)和电学(电阻率,电荷载流子,迁移率)性能的影响。通过磁控溅射沉积FTO是一种环保技术,使用松散填充的混合粉末靶材可提供有效的筛选候选成分的方法,同时还可提供低成本的操作。使用靶中12%的SnF2与88%的SnO2的质量比可获得最佳的薄膜特性。产生的薄膜是具有四方晶体结构的多晶。优化的条件得到的薄膜的平均可见光透射率为83%,光学带隙为3.80 eV,电阻率为6.71×10?3Ω·cm,载流子浓度(Nd)为1.46×1020 cm?3,迁移率为15 cm2 / Vs。

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