掺杂钕的硅酸盐的 UCPL、光致发光和热致发光特性的表征与研究

IF 1.5 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Brazilian Journal of Physics Pub Date : 2024-06-18 DOI:10.1007/s13538-024-01518-7
Rahul Pali, Mohammad Ziyauddin Khan, Aastha Sahu, R. P. Patel
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引用次数: 0

摘要

本文报告了(1%、2%、3%、4%和 5%)掺钕 BaSrSiO4 硅酸盐的上转换和下转换光致发光(PL)的光谱和动力学特征,以阐明 UCPL 的基本过程。本手稿讨论了能级转换和潜在激发过程。采用溶胶-凝胶法合成掺钕的 BaSrSiO4 纳米晶体,然后在 600 °C 下退火生成硅酸盐。利用 X 射线衍射(XRD)和扫描电子显微镜(SEM)测定了合成的掺钕 BaSrSiO4 粉末的晶相和纳米晶体的形成。在不同紫外-可见光波长的激活下,样品的聚光下变频(DCPL)显示出清晰的波段,以 890 纳米为中心的子分裂线与 Nd3+ 离子的近红外跃迁有关。由于多极相互作用,掺杂量为 5%时会出现淬灭现象,这表明 4% 的掺杂量适合温度传感应用。相反,在 800 纳米脉冲激光的激发下,发现了可见光上转换聚光(UCPL)。此外,我们还利用 UCPL 和光致发光激发 (PLE) 数据验证了建议的上转换过程能级。我们的研究结果表明,稀土(钕)掺杂的 BaSrSiO4 中的激发态吸收机制(ESA)很可能是 UCPL 过程的潜在机制。在 88 ℃ 时,掺杂 4 mol% Nd3+ 的 BaSrSiO4 的 TL 辉光峰强度最高。由于捕获中心的耗散,在 5%的温度下观察到了淬灭现象。
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Characterization and Investigation of the UCPL, Photoluminescence, and Thermoluminescence Properties of Neodymium-Doped Silicates

This paper reports the spectral and kinetic features of the up- and downconversion photoluminescence (PL) of (1%, 2%, 3%, 4%, and 5%) Nd-doped BaSrSiO4 silicates to elucidate the fundamental processes of UCPL. This manuscript discusses the energy transition levels and potential excitation processes. The sol-gel method was utilized for synthesizing Nd-doped BaSrSiO4 nanocrystals, which were then annealed at 600 °C to produce silicates. X-ray diffraction (XRD) and scanning electron microscopy (SEM) were used to determine the crystal phase and nanocrystal formation of the synthesized Nd-doped BaSrSiO4 powders. When activated by various UV–visible wavelengths, the PL downconversion (DCPL) from a sample exhibits well-resolved bands with sub-split lines centered at 890 nm associated with the near-infrared transitions in Nd3+ ions. Quenching occurred at 5% doping due to multipolar interactions, indicating that 4% doping is appropriate for temperature sensing applications. Conversely, a visible upconversion PL (UCPL) has been found when excited by a pulsed laser of 800 nm. Furthermore, the suggested energy levels for the upconversion process were verified using the UCPL and photoluminescence excitation (PLE) data. Our results imply that the excited-state absorption mechanism (ESA) in rare earth (Nd)-doped BaSrSiO4 is most likely a potential mechanism of the UCPL process. The TL glow peak shows the highest intensity for 4 mol% Nd3+-doped BaSrSiO4 at 88 °C. Quenching at 5% was observed due to the dissipation of the trapping centers.

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来源期刊
Brazilian Journal of Physics
Brazilian Journal of Physics 物理-物理:综合
CiteScore
2.50
自引率
6.20%
发文量
189
审稿时长
6.0 months
期刊介绍: The Brazilian Journal of Physics is a peer-reviewed international journal published by the Brazilian Physical Society (SBF). The journal publishes new and original research results from all areas of physics, obtained in Brazil and from anywhere else in the world. Contents include theoretical, practical and experimental papers as well as high-quality review papers. Submissions should follow the generally accepted structure for journal articles with basic elements: title, abstract, introduction, results, conclusions, and references.
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