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Influence of Synthesis Temperature on the Properties of SnO_2 Thin Films via Hydrothermal Precipitation Method

机译:合成温度对通过水热沉淀法的SnO_2薄膜性能的影响

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To provide reference for optimizing the photoelectric conversion efficiency, we studied the effects of salt-alkali molar ratio on the properties of tin oxide nanofilms. We found that when the hydrothermal temperature was increased to 80 °C, the film growth was not complete. With a hydrothermal temperature of 120 °C, the film became more complete and staictured. However, at 160 °C, thick and very irregular tin dioxide (SnO_2) crystal particles were deposited on the FTO conductive glass surface. With the increase in heat treatment temperature, crystallization became more and more dense and complete. At 80 °C hydrothermal temperature, the simulated peak of the surface and number of peaks became smaller. However, they significantly increased with a hydrothermal temperature of 120 °C. When the hydrothermal temperature was at 160 °C, the surface simulated peak increased, but the number of peaks decreased. Moreover, the diameter of each peak was greatly increased. The film obtained via the hydrothermal method was relatively pure, and Sn(OH)3 was not completely converted into SnO_2.
机译:为了提供优化光电转换效率的参考,我们研究了盐碱摩尔比对氧化锡纳米硅的性质的影响。我们发现当水热温增加至80℃时,薄膜生长未完成。具有120°C的水热温度,薄膜变得更加完整和令人作呕。然而,在160℃下,在FTO导电玻璃表面上沉积厚度和非常不规则的二氧化锡(SnO_2)晶体颗粒。随着热处理温度的增加,结晶变得越来越致密,完整。在80°C的水热温度下,表面和峰的数量的模拟峰变小。然而,它们具有120℃的水热温度显着增加。当水热温度为160℃时,表面模拟峰值增加,但峰的数量降低。此外,每个峰的直径大大增加。通过水热法得到的薄膜相对纯度,Sn(OH)3未完全转化为SnO_2。

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