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通过电荷补偿工程和能量转移实现新型Bi掺杂CaTaO绿色荧光粉发光性能的改善及可控颜色调节

Luminescence property improvement and controllable color regulation of a novel Bi doped CaTaO green phosphor through charge compensation engineering and energy transfer.

作者信息

Jiao Mengmeng, Sun Wenzhi, Wang Yanhui, Zhang Shufang, Xu Qinfeng, Zhang Lichun, Wang Dehua, Yang Chuanlu

机构信息

College of Physics and Optoelectronic Engineering, Ludong University, Yantai 264025, China.

College of Chemistry and Material Science, Ludong University, Yantai 264025, China.

出版信息

Phys Chem Chem Phys. 2021 Nov 24;23(45):25886-25895. doi: 10.1039/d1cp04635g.

Abstract

In pursuit of warm WLEDs, exploration of novel phosphors and regulation of the existing phosphors are the two approaches usually used in the luminescent material field. In this work, we prepared green CaTaO:Bi phosphors firstly and investigated their properties in detail. The as-prepared CaTaO:Bi exhibits intense green emission in the 450-580 nm range under UV excitation, which matches well with the UV chip and can efficiently avoid the re-absorption problem. The improvement in the emission intensity and thermal stability of the phosphor was achieved using different charge compensation methods including codoping alkali metal ions (Li, Na, and K), creating a cation vacancy, and host co-substitution (Ca + Ta → Bi + Si, Ca + Ta → Bi + Ge). Through systematic research, the emission intensity at room temperature was improved 2.1 times and the thermal stability was improved 2.9 times at 200 °C. By coating the prepared green sample with other commercial phosphors on the UV chip, warm WLEDs with Ra being 91.1 and CCT being 3990 K were obtained. Moreover, taking the Bi → Eu energy transfer strategy, the emitting color of the phosphor was tuned and yellow emitting phosphor was obtained. Our study indicates that Bi doped CaTaO might be a potential UV excited green phosphor for WLEDs. The charge compensation methods and the Bi → Eu energy transfer approach are valuable ways to improve and adjust the luminescence properties, which can further derivate a series of novel phosphors for improving the quality of WLED devices.

摘要

为了实现暖白色发光二极管(WLED),探索新型荧光粉和调控现有荧光粉是发光材料领域常用的两种方法。在本工作中,我们首先制备了绿色CaTaO:Bi荧光粉并详细研究了其性能。所制备的CaTaO:Bi在紫外光激发下于450 - 580 nm范围内呈现强烈的绿色发射,与紫外芯片匹配良好,可有效避免再吸收问题。通过使用不同的电荷补偿方法,包括共掺杂碱金属离子(Li、Na和K)、制造阳离子空位以及主体共取代(Ca + Ta → Bi + Si,Ca + Ta → Bi + Ge),实现了荧光粉发射强度和热稳定性的提升。经过系统研究,室温下发射强度提高了2.1倍,在200 °C时热稳定性提高了2.9倍。通过在紫外芯片上用其他商业荧光粉包覆所制备的绿色样品,获得了显色指数(Ra)为91.1、相关色温(CCT)为3990 K的暖白色发光二极管。此外,采用Bi→Eu能量转移策略,对荧光粉的发光颜色进行了调控,得到了黄色发射荧光粉。我们的研究表明,Bi掺杂的CaTaO可能是一种潜在的用于WLED的紫外激发绿色荧光粉。电荷补偿方法和Bi→Eu能量转移方法是改善和调节发光性能的有价值途径,可进一步衍生出一系列新型荧光粉以提高WLED器件的质量。

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