Strategies for broadening the emission spectra of Cr3+-doped near-infrared emitting phosphors

IF 6.4 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Changheng Chen, Jiwen Chang, Renze Chen, Ruibo Gao, Yiqing Wang, Kexin Zhu, Jinmeng Xiang and Chongfeng Guo
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Abstract

Cr3+-activated near-infrared (NIR) phosphors have significant application potential in food detection and analysis of biological fluids and tissues components owing to the large spectrum overlap between Cr3+ emission and the absorption bands of water and organic groups. To realize real-time, convenient and multi-component detection, a wideband NIR phosphor with a large bandwidth (FWHM > 200 nm) is urgently required to effectively cover the absorption band of the target analyte. This review simply offers a retrospect of the researches on existing Cr3+-doped wideband phosphors and summarizes the key strategies, including crystal field regulation, lattice site engineering, Cr3+–Cr3+ pairs, Cr3+/Cr4+ double fluorescence centers, energy transfer process and the new emission centers resulting from the lattice distortion caused by Cr3+ doping, for broadening the Cr3+ bandwidth. The feature of the Cr3+ emission is also discussed using the Tanabe–Sugano energy level diagram and configuration coordinate model. In addition, the existing problems and future prospects of Cr3+-activated wideband emission phosphors are elucidated, providing a reference to broaden the bandwidth of Cr3+ for the development of efficient and stable wideband near-infrared phosphors.

Abstract Image

增宽Cr3+掺杂近红外发光荧光粉发射光谱的策略
Cr3+激活的近红外荧光粉由于其发射光谱与水和有机基团的吸收光谱有较大的重叠,在食品检测和生物流体和组织成分分析中具有重要的应用潜力。为了实现实时、便捷、多组分的检测,一种大带宽的宽带近红外荧光粉(FWHM >;迫切需要200 nm)有效地覆盖目标分析物的吸收带。本文简单回顾了现有Cr3+掺杂宽带荧光粉的研究,总结了拓宽Cr3+带宽的关键策略,包括晶体场调控、点阵工程、Cr3+ -Cr3 +对、Cr3+/Cr4+双荧光中心、能量转移过程以及Cr3+掺杂引起的晶格畸变所产生的新发射中心。利用Tanabe-Sugano能级图和构型坐标模型讨论了Cr3+的发射特性。此外,阐述了Cr3+激活的宽带发射荧光粉存在的问题及未来前景,为拓宽Cr3+的带宽,开发高效、稳定的宽带近红外荧光粉提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials Chemistry Frontiers
Materials Chemistry Frontiers Materials Science-Materials Chemistry
CiteScore
12.00
自引率
2.90%
发文量
313
期刊介绍: Materials Chemistry Frontiers focuses on the synthesis and chemistry of exciting new materials, and the development of improved fabrication techniques. Characterisation and fundamental studies that are of broad appeal are also welcome. This is the ideal home for studies of a significant nature that further the development of organic, inorganic, composite and nano-materials.
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