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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Probing a highly efficient dual mode: Down-upconversion luminescence and temperature sensing performance of rare-earth oxide phosphors
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Probing a highly efficient dual mode: Down-upconversion luminescence and temperature sensing performance of rare-earth oxide phosphors

机译:探索高效的双模:稀土氧化物磷光体的下转换发光和温度感应性能

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摘要

A dual mode rare-earth based oxide phosphor (Y_(0.977)Yb_(0.02)Er_(0.003)NbO_4), demonstrating both down conversion (DC) and upconversion (UC) emission, has been developed using a facile solid state reaction method which can be easily scaled-up for large quantities. In the DC studies, the material exhibits a strong blue emission with a long decay time (4.36 μs), corresponding to the charge transfer band of [NbO_4]~(3-) under UV excitation (262 nm), and a green emission of the Er3+ ions under blue (379 nm) excitation. Furthermore, it has been noticed that under infrared (976 nm) excitation, this phosphor shows strong green and red emission along with relatively weak emission bands in the UV-blue and IR regions, which confirm the compatibility of this phosphor for UC too. In the UC emission, the ~2H_(11/2) → ~4I_(15/2) and ~4S_(3/2) → ~4I_(15/2) transitions of the Er~(3+) ion portray a temperature dependent behaviour and have been used for temperature sensing (optical thermometry) using the fluorescence intensity ratio (FIR) method. The maximum sensitivity is found to be 0.0073 K~(-1) at 473 K, which is better in comparison with other host matrixs reported so far. The results suggest that this dual mode phosphor could be an exceptional choice for next generation luminescence-based temperature sensing devices as well as in advanced display devices.
机译:使用一种简便的固态反应方法已经开发了一种双模稀土氧化物磷光体(Y_(0.977)Yb_(0.02)Er_(0.003)NbO_4),它既能实现下转换(DC)发射又能上转换(UC)发射。可以很容易地按比例放大以进行大量生产。在DC研究中,该材料呈现出强蓝色发射,并具有较长的衰减时间(4.36μs),与[NbO_4]〜(3-)的电荷转移带在紫外激发下(262 nm)相对应,而绿色发射为蓝色(379 nm)激发下的Er3 +离子。此外,已经注意到,在红外(976nm)激发下,该磷光体显示出强的绿色和红色发射以及在紫外蓝光和IR区域中的相对较弱的发射带,这也证实了该磷光体与UC的相容性。在UC发射中,Er〜(3+)离子的〜2H_(11/2)→〜4I_(15/2)和〜4S_(3/2)→〜4I_(15/2)跃迁描述了温度依赖行为,并已使用荧光强度比(FIR)方法用于温度感测(光学测温)。发现最大灵敏度为473 K时为0.0073 K〜(-1),与迄今为止报道的其他宿主基质相比更好。结果表明,这种双模荧光粉可能是下一代基于发光的温度感测设备以及高级显示设备的绝佳选择。

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