Advances in rare-earth-doped ternary metal oxides based phosphors: Synthesis, properties, and applications

Irfan Ayoub , Umer Mushtaq , Kartikey Verma , Vishal Sharma , Hendrik C. Swart , Vijay Kumar
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Abstract

Scientific advancements have led to unprecedented research and development of luminous materials. Among these, phosphor materials have emerged as highly efficient optoelectronic materials in the current century due to their advantageous characteristics, such as energy efficiency, environmental friendliness, and versatile applications. Phosphor materials are widely used across various technological sectors, particularly for energy-saving solutions. Extensive research efforts have focused on inorganic phosphor materials in response to the growing demand for light sources with low voltage requirements, extended lifetime, reduced energy usage, and good luminous efficiency. This review article aims to provide a comprehensive overview of the studies on rare-earth-doped MRE2ZnO5-based oxide phosphors. The review introduces these materials' fundamental characteristics and properties, followed by a general overview of the synthesis approaches employed. It then provides the tetragonal and orthorhombic structures identified among the five distinct crystal structures. The subsequent sections explore the impact and usability of various rare-earth dopants in MRE2ZnO5 phosphors and their applications in lighting, latent fingerprinting, and anticounterfeiting. Finally, the article concludes with an exclusive discussion of the key findings, future perspectives, and potential directions for further research in this field.
稀土掺杂三元金属氧化物基荧光粉的研究进展:合成、性能和应用
科学的进步导致了前所未有的研究和开发发光材料。其中,荧光粉材料因其节能、环保、用途广泛等优点,在本世纪成为高效光电子材料。荧光粉材料广泛应用于各个技术领域,特别是节能解决方案。广泛的研究工作集中在无机荧光粉材料上,以响应对低电压要求、延长寿命、减少能源使用和良好发光效率的光源日益增长的需求。本文综述了稀土掺杂mre2zno5基氧化物荧光粉的研究进展。本文介绍了这些材料的基本特征和性质,然后概述了所采用的合成方法。然后给出了在五种不同的晶体结构中确定的四方和正交结构。接下来的部分将探讨各种稀土掺杂剂在MRE2ZnO5荧光粉中的影响和可用性,以及它们在照明、潜在指纹识别和防伪方面的应用。最后,本文对该领域的主要发现、未来展望和潜在的研究方向进行了独家讨论。
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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