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Electrical and optical property enhancement in multilayered sol-gel-deposited SnO_2 films

机译:多层溶胶凝胶沉积SnO_2薄膜的电学和光学性质增强

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When prepared by the sol-gel dip-coating technique, doped tin oxide films need several superimposed layers to reach the expected low sheet resistance. In this paper we show that successive depositions increase the uniformity and homogeneity of multi-layered sol-gel tin oxide films. The final thickness is always found to be lower than a multiple of the initial first layer thickness, indicating that densification occurs. A strong improvement of physical properties is jointly observed in this multilayered configuration. All parameters (atomic density, refractive index, electrical resistivity, optical transmission and reflectivity) evolve towards bulk material values. This is explained by the fact that the sol, in which is dipped the substrate, fills in the pores or cracks remaining in the previously deposited layers. The quality of the sol-gel tin oxide stacked deposits obtained in such a way is evidenced by the M-line spectroscopy experiments presented in this paper. It is shown that multilayered coatings are able to guide light over some millimetres.
机译:当通过溶胶-凝胶浸涂技术制备时,掺杂的氧化锡膜需要几个叠加的层才能达到预期的低薄层电阻。在本文中,我们证明了连续沉积可以增加多层溶胶-凝胶氧化锡薄膜的均匀性和均匀性。总是发现最终厚度小于初始第一层厚度的倍数,表明发生致密化。在该多层构造中共同观察到物理性能的强烈改善。所有参数(原子密度,折射率,电阻率,光学透射率和反射率)朝着整体材料值发展。这可以通过以下事实来解释:浸入基材中的溶胶填充了先前沉积层中残留的孔或裂纹。本文介绍的M线光谱实验证明了以这种方式获得的溶胶-凝胶氧化锡堆叠沉积物的质量。结果表明,多层涂层能够在几毫米的范围内引导光。

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