甘氨酸为燃料燃烧法制备近紫外发光二极管用lid2 - xyx:Eu3+ O3纳米磷光体Judd-Ofelt参数的测定

IF 3.2 4区 化学 Q2 CHEMISTRY, ANALYTICAL
Luminescence Pub Date : 2025-03-13 DOI:10.1002/bio.70129
Milind A. Patwardhan, Ritesh L. Kohale, Ritesh K. Jumale, Sarika A. Khapre, Rujuta K. Joshi, A. N. Yerpude
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引用次数: 0

摘要

本文介绍了一种利用甘氨酸作为环保燃料合成lid₂ₓYₓ:Eu3+O₃纳米荧光粉的燃烧合成方法。甘氨酸是一种天然存在的氨基酸,是一种可持续的、可再生的、低排放的传统燃料替代品,最大限度地减少了合成过程对环境的影响。研究重点分析了纳米荧光粉的Judd-Ofelt (JO)参数,探讨了纳米荧光粉的发光特性和光学性能,重点研究了纳米荧光粉在近紫外(UV)发光二极管(led)中的应用。所采用的燃烧方法产生具有特殊光学特性的纳米荧光粉,同时减少能源消耗和有害排放。该研究包括了LiGd₂₂ₓYₓ:Eu3+O₃纳米荧光粉的合成过程、结构表征和光致发光分析。通过应用JO理论,JO参数分析为发光行为提供了有价值的见解,从而可以优化光学特性,从而提高近紫外LED应用的性能。这些发现强调了JO参数分析在改进这些纳米荧光粉的发光效率方面的重要性。此外,燃烧技术的使用促进了下一代光电器件创新材料的发展。这项工作有助于理解纳米磷光体的合成,并为节能、环保照明提供了潜在的解决方案,解决了照明和光电子领域对可持续技术日益增长的需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Determination of Judd–Ofelt Parameters for LiGd2-XYx:Eu3+ O3 Nanophosphor Synthesis by Combustion Method With Glycine as Fuel for Near UV Light Emitting Diode

Determination of Judd–Ofelt Parameters for LiGd2-XYx:Eu3+ O3 Nanophosphor Synthesis by Combustion Method With Glycine as Fuel for Near UV Light Emitting Diode

This paper introduces a combustion synthesis method utilizing glycine as an eco-friendly fuel for the synthesis of LiGd₂₋ₓYₓ:Eu3+O₃ nanophosphors. Glycine, being a naturally occurring amino acid, serves as a sustainable, renewable, and low-emission alternative to conventional fuels, minimizing the environmental impact of the synthesis process. The research focuses on analyzing Judd–Ofelt (JO) parameters to explore the luminescent properties and optical performance of the nanophosphors, with a specific emphasis on their application in near-ultraviolet (UV) light-emitting diodes (LEDs). The combustion method employed produces nanophosphors with exceptional optical characteristics while reducing both energy consumption and harmful emissions. The study includes the synthesis process, structural characterization, and photoluminescence analysis of the LiGd₂₋ₓYₓ:Eu3+O₃ nanophosphors. By applying JO theory, the JO parameter analysis provides valuable insights into the luminescent behavior, enabling the optimization of optical properties for improved performance in near-UV LED applications. The findings highlight the importance of JO parameter analysis in refining the luminescent efficiency of these nanophosphors. Moreover, the use of the combustion technique promotes the development of innovative materials for next-generation optoelectronic devices. This work contributes to the understanding of nanophosphor synthesis and offers potential solutions for energy-efficient, environmentally friendly lighting, addressing the increasing demand for sustainable technologies in lighting and optoelectronics.

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来源期刊
Luminescence
Luminescence 生物-生化与分子生物学
CiteScore
5.10
自引率
13.80%
发文量
248
审稿时长
3.5 months
期刊介绍: Luminescence provides a forum for the publication of original scientific papers, short communications, technical notes and reviews on fundamental and applied aspects of all forms of luminescence, including bioluminescence, chemiluminescence, electrochemiluminescence, sonoluminescence, triboluminescence, fluorescence, time-resolved fluorescence and phosphorescence. Luminescence publishes papers on assays and analytical methods, instrumentation, mechanistic and synthetic studies, basic biology and chemistry. Luminescence also publishes details of forthcoming meetings, information on new products, and book reviews. A special feature of the Journal is surveys of the recent literature on selected topics in luminescence.
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