可见光活化超长橙色余辉荧光粉Sr1−x Ga2O4:xCu2+

IF 3.4 2区 工程技术 Q1 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE Displays Pub Date : 2025-07-01 Epub Date: 2025-03-15 DOI:10.1016/j.displa.2025.103028
Li Hao, Gongchun Zhang, Qingping Wang, Ling Su, Lijuan Feng, Guiquan Jiang
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引用次数: 0

摘要

高效的可见光激活长持续发光(LPL)荧光粉由于其不依赖外部光源和节能特性而受到广泛的需求。然而,设计和开发这种材料仍然是一个重大挑战。本文描述了掺杂过渡金属离子(Sr1−x Ga2O4:xCu2+)的新型LPL荧光粉,解决了可见光激发红色发光LPL荧光粉的挑战。可见光激发是通过在制备荧光粉过程中调节煅烧气氛来实现的。当Cu2+掺杂量为2%时,紫外光和可见光都能激发该荧光粉。在可见光激发下,主发射峰出现在610 nm左右;对不同延迟时间后的发射光谱,以及光致发光和热致发光光谱的研究,揭示了一种涉及电子捕获和释放的机制。独特的长余辉和激发特性,以及SrGa2O4:0.02Cu2+的发射特性,特别适合于夜间标牌和动态防伪等应用。本研究为可见光活化LPL荧光粉的设计提供了新的方向。
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Visible light-activated ultra-long orange afterglow phosphor Sr1−x Ga2O4:xCu2+
Because of both their independence from external light sources and their energy-saving properties, efficient visible light-activated long persistent luminescence (LPL) phosphors are in high demand. Designing and developing such materials, however, remains a significant challenge. This report describes new LPL phosphors doped with transition metal ions (Sr1−x Ga2O4:xCu2+), which address the challenge of excitation of red light-emitting LPL phosphors by visible light. Visible light excitation is achieved by adjusting the calcination atmosphere during preparation of the phosphor. When the Cu2+ ion doping level is 2 %, the phosphor can be excited by both UV and visible light. Upon excitation by visible light, the main emission peak occurs at approximately 610 nm; this is observed as orange light, with an afterglow duration of over 11 h. Investigation of the emission spectra after different delay times, together with the photoluminescence and thermoluminescence spectra, revealed a mechanism that involves trapping and de-trapping of electrons. The unique long afterglow and excitation properties, together with the emission characteristics of SrGa2O4:0.02Cu2+, are particularly suited for applications such as night time signage and dynamic anti-counterfeiting. This research provides new directions for the design of visible light-activated LPL phosphors.
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来源期刊
Displays
Displays 工程技术-工程:电子与电气
CiteScore
4.60
自引率
25.60%
发文量
138
审稿时长
92 days
期刊介绍: Displays is the international journal covering the research and development of display technology, its effective presentation and perception of information, and applications and systems including display-human interface. Technical papers on practical developments in Displays technology provide an effective channel to promote greater understanding and cross-fertilization across the diverse disciplines of the Displays community. Original research papers solving ergonomics issues at the display-human interface advance effective presentation of information. Tutorial papers covering fundamentals intended for display technologies and human factor engineers new to the field will also occasionally featured.
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