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Tin-Doped Inorganic Amorphous Films for Use as Transparent Monolithic Phosphors

机译:锡掺杂无机非晶薄膜用作透明整体磷光体

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摘要

Although inorganic crystalline phosphors can exhibit high quantum efficiency, their use in phosphor films has been limited by a reliance on organic binders that have poor durability when exposed to high-power and/or high excitation energy light sources. To address this problem, Sn>2+ -doped transparent phosphate films measuring several micrometers in thickness have been successfully prepared through heat treatment and a subsequent single dip-coating process. The resulting monolithic inorganic amorphous film exhibited an internal quantum efficiency of over 60% and can potentially utilize transmitted light. Analysis of the film’s emissivity revealed that its color can be tuned by changing the amount of Mn and Sn added to influence the energy transfer from Sn>2+ to Mn>2+. It is therefore concluded that amorphous films containing such emission centers can provide a novel and viable alternative to conventional amorphous films containing crystalline phosphors in light-emitting devices.
机译:尽管无机晶体磷光体可以表现出高量子效率,但是它们在磷光体膜中的使用受到对有机粘合剂的依赖的限制,所述有机粘合剂在暴露于高功率和/或高激发能光源时耐久性差。为了解决这个问题,已经通过热处理和随后的单浸涂工艺成功地制备了厚度为几微米的Sn > 2 + 掺杂的透明磷酸盐薄膜。所得的整体无机无定形膜表现出超过60%的内部量子效率,并有可能利用透射光。对薄膜的发射率进行分析后发现,可以通过改变添加的Mn和Sn的数量来调节其颜色,以影响从Sn > 2 + 到Mn < strong> 2 + 。因此,可以得出结论,在发光器件中,包含这种发射中心的非晶膜可以为包含晶体荧光粉的常规非晶膜提供新颖可行的替代方法。

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