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首页> 外文期刊>CERAMICS INTERNATIONAL >Reversible photoluminescence modulation in praseodymium-doped bismuth titanate ceramics for information storage based on photochromic reaction
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Reversible photoluminescence modulation in praseodymium-doped bismuth titanate ceramics for information storage based on photochromic reaction

机译:基于光致变色反应的信息储存碳化矿物掺杂铋铋型钛酸铋陶瓷的可逆光致发光调制

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摘要

Photoluminescence materials with reversible luminescence regulation properties have great potential for applications in photoswitches, optical sensing, and high-density optical data storage devices. In this work, a series of Pr3+-doped Bi4Ti3O12 (BiT) ceramics were synthesized by a high-temperature solid-phase reaction method. It is well known that BiT is the most famous one within the Aurivillius ferroelectric (FE) system. Previous works routinely focused on the FE-related properties of BiT-based compounds, but little attention has been devoted to the luminescence, especially the luminescence modulation performance. Here, a large and reversible photoluminescence modulation by alternating visible light irradiation and thermal stimulus based on photochromic (PC) process was achieved. Meanwhile, the influence of sintering temperature on the luminescence modulation behavior was also illustrated. The luminescence regulation properties of the Pr3+-doped BiT ceramics prepared at optimized sintering temperature were investigated in detail. The mechanisms connected to the luminescence, luminescence manipulation, and PC effect were discussed. It is believed that Pr3+-doped BiT materials can be utilized as a kind of ideal optical medium for future information storage device.
机译:具有可逆发光调节性能的光致发光材料具有很大的应用程序,光学传感和高密度光学数据存储设备的应用。在这项工作中,通过高温固相反应方法合成了一系列PR3 +掺杂的Bi4Ti3O12(位)陶瓷。众所周知,位是Aurivillius铁电(Fe)系统中最着名的。以前的作品常规地关注基于比特的化合物的Fe相关性质,但很少注意发光,特别是发光调制性能。这里,实现了通过基于光致变色(PC)工艺的交替可见光照射和热刺激的大型和可逆光致发光调制。同时,还示出了烧结温度对发光调制行为的影响。详细研究了在优化的烧结温度下制备的PR3 +掺杂位陶瓷的发光调节性能。讨论了连接到发光,发光操纵和PC效应的机制。据信PR3 +拆卸的比特材料可以用作未来信息存储设备的理想光学介质。

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