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Multifunctional transition metal doped Sb_2O_3 thin film with high near-IR transmittance, anti-reflectance and UV blocking features

机译:多功能过渡金属掺杂Sb_2O_3薄膜,具有高近红外透射率,抗反射性和紫外线阻挡功能

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We present optically modified Sb2O3 thin film as a multi-functional layer that can be used as UV blocking, Near Infrared (NIR) transmitting and anti-reflecting layer suited for solar energy harvesting. Optical modifications are achieved by transition metal (Mn, Ni and Cu) doping through vacuum evaporation and solid state grinding which introduces new sidewise outgrowths emerging on the previously reported thorn structure of the film. The new structures are found growing along [110] direction, reducing the growth of thorns along [111] direction. Though the UV absorbance and wavelength range of absorbance are larger for transition metal doped Sb2O3 thin films, their UV reflectance is very low compared to the undoped films. However, they all show very good absorption in UVB and UVC regions and partial absorption in UVA region like undoped Sb2O3 thin films. Ultraviolet Protection Factor of all the films lie in the range 25-50 showing their competent UV blocking ability. NIR transmittances of Sb2O3 thin film increases with Ni and Mn doping, making them appropriate for NIR transmitting layers in cover glass of IR sensors and solar thermal energy collectors. Considering the multi-functionality, the overall performance of transition metal doped Sb2O3 thin films are more efficient than undoped film.
机译:我们提出了一种光学改性的Sb2O3薄膜,它是一种多功能层,可以用作适合太阳能收集的紫外线阻挡层,近红外(NIR)透射和减反射层。通过真空蒸发和固态研磨对过渡金属(Mn,Ni和Cu)进行掺杂,可以实现光学修饰,从而在先前报道的膜刺结构上引入了新的侧向生长物。发现新结构沿[110]方向生长,减少了荆棘沿[111]方向生长。尽管过渡金属掺杂的Sb2O3薄膜的紫外线吸收率和吸收波长范围较大,但与未掺杂的薄膜相比,它们的紫外线反射率非常低。但是,它们像未掺杂的Sb2O3薄膜一样,在UVB和UVC区域显示出非常好的吸收,而在UVA区域显示出部分吸收。所有薄膜的紫外线保护系数都在25-50之间,表明它们具有出色的紫外线阻隔能力。 Sb2O3薄膜的NIR透射率随Ni和Mn掺杂的增加而增加,使其适合于IR传感器和太阳能集热器的保护玻璃中的NIR透射层。考虑到多功能性,过渡金属掺杂的Sb2O3薄膜的整体性能比未掺杂的薄膜更有效。

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