通过燃料过量凝胶燃烧合成法合成的新型白磷 Bi3+ 共掺杂 SrCeO3: 2 wt% Sm3+ 用于 wLED 应用。

IF 2.6 4区 化学 Q2 BIOCHEMICAL RESEARCH METHODS
C K Shilpa, S V Jasira, V P Veena, M Aardhra, K M Nissamudeen
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引用次数: 0

摘要

如果激活剂的发射能量相对于现有激发能量较低,就需要采用共掺杂策略。因此,为了丰富激活剂的发射,需要在宿主上共掺杂敏化剂(如 Bi3+),这种中间体会将其发射能量传递给激活剂。在这项研究之前,还没有进行过任何研究,这标志着在稀土掺杂的 SrCeO3 基质中对敏化剂效应进行了基础性探索,旨在增强发光特性。当前研究的重点是创新单相强效白色荧光粉 SrCeO3: 2wt% Sm3+: xBi3+(x = 0 wt%、0.5 wt%、1 wt%、1.5 wt%、2 wt%),用于涂覆近紫外 LED 芯片,以实现高显色指数 wLED 应用。新型过氧化物是利用低温燃料过量凝胶燃烧法合成的,使用柠檬酸作为燃料,硝酸铵作为额外的氧化剂。通过 X 射线衍射、FE-SEM、能量色散光谱、紫外可见吸收光谱和光致发光表征方法,探讨了铋与 SrCeO3:2wt% Sm3+ 共掺杂后,敏化剂浓度的变化对陶瓷粉末的晶相发展、形貌、元素组成、带隙能和发光特性的影响。实验结果表明,SrCeO3: 2wt% Sm3+: xBi3+ 超晶石形成了正交单相,在临界敏化剂浓度为 1wt% Bi3+ 时具有高结晶度和最大发光强度。此外,利用 CIE 色图还证实了所有过氧化物都能发出明亮的白光。因此,SrCe0.97Sm0.02O3: 1wt% Bi3+ 纳米过氧化物可作为一种不可或缺的直接荧光粉,涂覆在 LED 的近紫外芯片上,这将是节能应用领域的一场伟大革命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Novel White Phosphor Bi<sup>3+</sup> co-doped SrCeO<sub>3</sub>: 2 wt% Sm<sup>3+</sup> Synthesized via Fuel Excess Gel Combustion Synthesis for wLED Applications.

Novel White Phosphor Bi3+ co-doped SrCeO3: 2 wt% Sm3+ Synthesized via Fuel Excess Gel Combustion Synthesis for wLED Applications.

Co-doping strategy is done if the emission from the activator is relatively low with existing excitation energy. Thus, to enrich the emission from an activator, the sensitizer like Bi3+ is co-doped onto the host and this intermediator transfers its emission energy to the activator. Prior to the study, no investigations had been conducted, marking the foundational exploration of the sensitizer effect within the rare earth-doped SrCeO3 matrix aimed at enhancing luminescence properties. The current study focuses on the innovation of single-phase robust white phosphors, SrCeO3: 2wt% Sm3+: xBi3+ (x = 0 wt%, 0.5 wt%, 1 wt%, 1.5 wt%, 2 wt%) to coat near UV LED chips for high CRI wLED applications. The novel perovskites were synthesized using a low-temperature fuel excess gel combustion method, utilizing citric acid as the fuel and ammonium nitrate as an extra oxidizer. Upon co-doping SrCeO3: 2wt% Sm3+ with bismuth, the impact of changing sensitizer concentration on both the development of crystalline phases, morphology, elemental composition, band gap energy, and the luminescent properties of ceramic powders were explored through X-ray diffraction, FE-SEM, Energy dispersive spectra, UV-visible absorption spectra, and photoluminescence characterization methods. The experimental results revealed the orthorhombic single-phase formation of SrCeO3: 2wt% Sm3+: xBi3+perovskites yielding high crystallinity and luminescence maximum at critical sensitizer concentration 1 wt% Bi3+. Also, the bright white light emission of all the perovskites was confirmed using the CIE color diagram. Thus, nano-perovskite SrCe0.97Sm0.02O3: 1wt% Bi3+ acts as an inevitable direct phosphor coating the near UV chip in LEDs, which can be a great revolution in energy savings applications.

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来源期刊
Journal of Fluorescence
Journal of Fluorescence 化学-分析化学
CiteScore
4.60
自引率
7.40%
发文量
203
审稿时长
5.4 months
期刊介绍: Journal of Fluorescence is an international forum for the publication of peer-reviewed original articles that advance the practice of this established spectroscopic technique. Topics covered include advances in theory/and or data analysis, studies of the photophysics of aromatic molecules, solvent, and environmental effects, development of stationary or time-resolved measurements, advances in fluorescence microscopy, imaging, photobleaching/recovery measurements, and/or phosphorescence for studies of cell biology, chemical biology and the advanced uses of fluorescence in flow cytometry/analysis, immunology, high throughput screening/drug discovery, DNA sequencing/arrays, genomics and proteomics. Typical applications might include studies of macromolecular dynamics and conformation, intracellular chemistry, and gene expression. The journal also publishes papers that describe the synthesis and characterization of new fluorophores, particularly those displaying unique sensitivities and/or optical properties. In addition to original articles, the Journal also publishes reviews, rapid communications, short communications, letters to the editor, topical news articles, and technical and design notes.
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