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Luminescence properties of europium titanate thin films grown by atomic layer deposition

机译:原子层沉积生长铕钛酸薄膜的发光性能

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摘要

Luminescent europium titanium oxides (Eu _( x ) Ti _( y ) O _( z ) ) have been deposited as thin films by atomic layer deposition (ALD) in the temperature range 225 to 375 °C with control of the stoichiometry from pure TiO _(2) to pure Eu _(2) O _(3) , and their luminescent properties have been characterized. The current work demonstrates the feasibility of tailoring the luminescent properties of these films by varying ALD deposition parameters. The highest luminescence efficiency was observed for the amorphous phase while it decreases steadily with increasing annealing temperature up to 700 °C due to the formation of crystalline Eu _(2) Ti _(2) O _(7) . The limiting factor for luminescence at low Eu contents is the low concentration of emitting Eu ~(3+) atoms, while the luminescence at high Eu contents is limited by a low UV absorption due to the low Ti ~(4+) content in these samples. The precursors used for the Ti–O deposition were TiCl _(4) and H _(2) O, while Eu(thd) _(3) (thd = 2,2,6,6-tetramethyl-3,5-heptanedione) and ozone were used for the deposition of Eu–O. The films have been characterized by spectroscopic ellipsometry, photoluminescence, X-ray diffraction, X-ray fluorescence and atomic force microscopy. The depositions gave smooth (RMS roughness < 0.4 nm) and amorphous films for 30% and more Eu–O cycles (9.5 cationic% Eu), while 10 and 20% gave rough and partly crystalline films. The refractive index, extinction coefficient and luminescence efficiency are shown to vary continuously with Eu content for 30% Eu–O cycles or more, while the shape of the luminescence spectrum is independent of Eu content in the same range. For the 10 and 20% Eu–O depositions, we observed a gradual change in the luminescence spectra, coinciding with an increase of the proportion of anatase phase with decreasing Eu content.
机译:通过在225至375℃的温度范围为225至375℃的原子层沉积(ALD),通过控制来自纯的化学计量的原子层沉积(ALD)沉积为薄膜(Eu _(x)Ti _(Y)O)O _(Z))作为薄膜沉积为薄膜。 TiO_(2)纯欧_(2)o _(3),并表现了它们的发光特性。目前的工作通过改变ALD沉积参数来说明通过变化的ALD沉积参数来定制这些薄膜的发光性能。对于无定形阶段,观察到最高发光效率,而由于结晶Eu _(2)Ti _(2)O _(7),它由于形成高达700℃而稳定地降低至700℃。低欧盟含量下发光的限制因素是发光Eu〜(3+)原子的低浓度,而高欧孔含量的发光受到以下低Ti〜(4+)含量的低紫外线吸收的限制样品。用于Ti-O沉积的前体是TiCl _(4)和H _(2)o,而Eu(THD)_(3)(THD = 2,2,6,6-四甲基-3,5-庚烷基)和臭氧用于沉积EU-O。该薄膜的特征在于光谱椭圆形,光致发光,X射线衍射,X射线荧光和原子力显微镜。沉积产生平滑(RMS粗糙度<0.4nm)和30%和更多Eu-O循环(9.5阳离子%Eu)的无定形膜,而10和20%粗糙,部分结晶膜。折射率,消光系数和发光效率显示出与欧盟含量连续变化30%EU-O循环或更大,而发光光谱的形状与同一范围内的EU含量无关。对于10和20%的EU-O沉积,我们观察到发光光谱的逐渐变化,与锐钛矿相的比例的增加,随着欧盟含量降低。

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