首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Lu2CaMg2(Si1-xGex)(3)O-12:Ce3+ solid-solution phosphors: bandgap engineering for blue-light activated afterglow applicable to AC-LED
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Lu2CaMg2(Si1-xGex)(3)O-12:Ce3+ solid-solution phosphors: bandgap engineering for blue-light activated afterglow applicable to AC-LED

机译:Lu2CaMg2(Si1-xGex)(3)O-12:Ce3 +固溶磷光体:适用于AC-LED的蓝光激活余辉的带隙工程

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Persistent luminescence (PersL) has long commanded the curiosity of researchers owing to the complicated and profound physics behind it. In this work, the PersL mechanism in a new kind of persistent garnet phosphors, Lu2CaMg2(Si1-xGex)(3)O-12:Ce3+, is studied from the new perspective of a "solid-solution'' scheme. Different from the conventional study in pursuit of long PersL, we focus on manipulation of afterglow to the millisecond range and tentatively demonstrate its potential to compensate the flickering of the alternating current driven LED (AC-LED) in every AC cycle. Evidently, the tailored host bandgap favors efficient electron charging and facilitates electron detrapping, as well as redeploying trap distribution, which results in a blue light activated afterglow in the millisecond time range, and subsequently a reduced percent flicker of 64.1% for the AC-LED. This investigation is the first attempt to establish the design guidelines for new PersL materials with an adjustable millisecond ranged afterglow, and, hopefully, it paves a pathway to the development of burgeoning low-flickering AC-LED technology.
机译:持久发光(PersL)由于其背后复杂而深刻的物理原理,长期以来一直引起研究人员的好奇。在这项工作中,从“固溶”方案的新角度研究了新型持久性石榴石荧光粉Lu2CaMg2(Si1-xGex)(3)O-12:Ce3 +中的PersL机制。为了追求较长的PersL,我们进行了常规研究,我们着重于将余辉控制在毫秒范围内,并初步证明了其在每个AC周期中补偿交流驱动LED(AC-LED)闪烁的潜力。有效的电子充电并促进电子的俘获,以及重新部署陷阱分布,从而导致在毫秒时间范围内发出蓝光激活的余辉,从而使AC-LED的闪烁百分比降低了64.1%。建立具有可调毫秒余辉范围的新型PersL材料的设计指南,希望它为发展新兴的低闪烁AC-LED技术铺平了道路。

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