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Systematic optimization of chemical deposition conditions for synthesis of vanadium(V) oxide xerogels

机译:钒(v)氧化物Xerogels合成化学沉积条件的系统优化

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摘要

We performed the optimization of conditions in chemical bath deposition using the design of experimental methodology. Factorial design (2(3)) was used for finding the optimal conditions of preparing vanadium(V) oxide xerogel thin films with better electrochromic properties suitable for electrochemical applications. The thin films were prepared by acidification of NH4 VO3 aqueous solution with chemical bath deposition. The factors and selected values we considered were as follows: the deposition time (10 and 20 min), the deposition temperature (70 and 80 degrees C), and the mass of ammonium metavanadate (0.3 and 0.5 g). UV-vis spectrometry was used for recording the transmittance variance, Delta T, as the property of interest for modeling in this work. Increasing the deposition temperature and time values led to an increase in the value of Delta T at 800 nm wavelength, but the mass of NH4 VO3 showed the opposite effect. Modeling performed using a 2(3) factorial design showed that the concentration of the ammonium metavanadate was the single most important factor.
机译:我们采用实验设计方法对化学镀液沉积的条件进行了优化。采用析因设计(2(3))找到了制备具有更好电致变色性能、适合电化学应用的钒(V)氧化物干凝胶薄膜的最佳条件。用化学浴沉积法将NH4-VO3水溶液酸化制备薄膜。我们考虑的因素和选择值如下:沉积时间(10和20分钟)、沉积温度(70和80摄氏度)和偏钒酸铵质量(0.3和0.5克)。紫外-可见光谱法用于记录透射率方差δT,作为本工作中建模的重要属性。随着沉积温度和时间的增加,800 nm波长处的δT值增加,但NH4 VO3的质量表现出相反的效果。采用2(3)析因设计进行的建模表明,偏钒酸铵的浓度是唯一最重要的因素。

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