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Influence of deposition temperature on luminescent efficiency of Y2O3 : Eu3+ thin films deposited on quartz fabric by EBE

机译:沉积温度对EBE沉积在石英织物上的Y2O3:Eu3 +薄膜发光效率的影响

摘要

Y2O3:Eu3+ thin films were grown on quartz fabric substrate by electron beam evaporation (EBE) at different deposition temperatures. It was found that an increase of deposition temperature from room temperature (R.T.) to 250°C results in improved morphologies of the films, such as reduced defects, spherical particle shape and dense surface topography. A change in the predominant orientation of Y2O3:Eu3+ thin films was detected from (222) at low temperatures of R.T.-150°C to (400) at higher temperatures of 200-250°C. The luminescent intensity of the films was gradually improved with an increase in deposition temperature and the optimal brightness was observed when the films were grown at 250°C and improved by 32.67% in comparison with that of the films grown at R.T. The results reveal that the improved morphologies and effective crystallization can contribute to the enhanced luminescent properties of the Y2O3:Eu3+ thin films.
机译:在不同的沉积温度下,通过电子束蒸发(EBE)在石英织物衬底上生长Y2O3:Eu3 +薄膜。发现沉积温度从室温(R.T.)增加到250℃导致膜的形态改善,例如减少的缺陷,球形颗粒形状和致密的表面形貌。在R.T.-150°C的低温下从(222)到200-250°C的高温下的(400)检测到Y2O3:Eu3 +薄膜的主要取向变化。随着沉积温度的升高,薄膜的发光强度逐渐提高,并且在250°C下生长时观察到最佳亮度,与在室温下生长的薄膜相比,发光强度提高了32.67%。结果表明,改善的形貌和有效的结晶可以有助于增强Y2O3:Eu3 +薄膜的发光性能。

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