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Defect-related luminescent materials: synthesis, emission properties and applications

机译:与缺陷相关的发光材料:合成,发射特性和应用

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摘要

Luminescent materials have found a wide variety of applications, including information displays, lighting, X-ray intensification and scintillation, and so on. Therefore, much effort has been devoted to exploring novel luminescent materials so far. In the past decade, defect-related luminescent materials have inspired intensive research efforts in their own right. This kind of luminescent material can be basically classified into silica-based materials, phosphate systems, metal oxides, BCNO phosphors, and carbon-based materials. These materials combine several favourable attributes of traditional commercially available phosphors, which are stable, efficient, and less toxic, being free of the burdens of intrinsic toxicity or elemental scarcity and the need for stringent, intricate, tedious, costly, or inefficient preparation steps. Defect-related luminescent materials can be produced inexpensively and on a large scale by many approaches, such as sol-gel process. hydro(solvo)thermal reaction, hydrolysis methods, and electrochemical methods. This review article highlights the recent advances in the chemical synthesis and luminescent properties of the defect-related materials, together with their control and tuning, and emission mechanisms (solid state physics). We also speculate on their future and discuss potential developments for their applications in lighting and biomedical fields.
机译:发光材料已发现了广泛的应用,包括信息显示,照明,X射线增强和闪烁等。因此,迄今为止,已经投入大量努力来探索新型发光材料。在过去的十年中,与缺陷相关的发光材料本身激发了深入的研究工作。这种发光材料基本上可以分为基于二氧化硅的材料,磷酸盐体系,金属氧化物,BCNO磷光体和基于碳的材料。这些材料结合了传统市售磷光体的几个有利属性,这些属性稳定,高效且毒性小,没有内在毒性或元素稀缺的负担,并且不需要严格,复杂,繁琐,昂贵或低效的制备步骤。与缺陷相关的发光材料可以通过许多方法廉价地大规模生产,例如溶胶-凝胶法。水(溶剂)热反应,水解方法和电化学方法。这篇综述文章重点介绍了与缺陷相关的材料的化学合成和发光特性,以及它们的控制和调整以及发射机理(固态物理学)的最新进展。我们还推测了它们的未来,并讨论了它们在照明和生物医学领域中的应用的潜在发展。

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