首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Reversible up- conversion luminescence modulation based on UV- VIS light- controlled photochromism in Er3+doped Sr2SnO4+
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Reversible up- conversion luminescence modulation based on UV- VIS light- controlled photochromism in Er3+doped Sr2SnO4+

机译:基于UV-Vis光控制光学变色的可逆上转换发光调制在ER3 +掺杂SR2SNO4 +中

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摘要

Up-conversion phosphors with reversible luminescence modulation in response to external stimuli have great potential for applications in optical memory devices, photoswitches and optical sensing. For the accessibility and the controlling convenience, light stimulation is an optimal method to realize the modulation. Here, we report a novel phosphor Sr2SnO4:Er3+, which shows both up-conversion luminescence and reversible photochromic properties upon introducing Er3+ ions into the Sr2SnO4 host. The up-conversion luminescence can be reversibly modulated by alternating ultraviolet light (270-310 nm) and visible light (440-520 nm) irradiation based on the reversible photochromic reaction. 290 and 460 nm are found to be the most efficient wavelengths to control the photochromic reaction and luminescence modulation. And the photochromic degree and luminescence modulation ratio are dependent on the doped Er3+ ion concentration. Large luminescence decrease (84.9%) and increase ratios (266.0%) are achieved in Sr2SnO4:0.005Er(3+). Furthermore, the mechanisms of photochromism and luminescence modulation are investigated.
机译:具有可逆发光调制的上转换磷光体响应外部刺激的响应具有很大的应用在光学存储器装置,光学开关和光学传感中的应用。对于可访问性和控制方便,光刺激是实现调制的最佳方法。在这里,我们报告了一种新型磷光体SR2SNO 4:ER3 +,其显示在将ER3 +离子引入SR2SNO4宿主时显示上转化发光和可逆光致变色性质。可以通过基于可逆光致变色反应交替紫外线(270-310nm)和可见光(440-520nm)辐射来可逆地调节上转换发光。发现290和460nm是最有效的波长,以控制光致变色反应和发光调制。并且光致变色度和发光调制比取决于掺杂的ER3 +离子浓度。在SR2SNO4:0.005er(3+)中,在SR2SNO 4:0.00℃下实现大的发光降低(84.9%)和增加比率(266.0%)。此外,研究了光学变频和发光调制的机制。

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