Y2O3:Sm3+ 纳米粉体的结构和光致发光研究:有机剂的影响

IF 1.3 Q3 CHEMISTRY, MULTIDISCIPLINARY Vietnam Journal of Chemistry Pub Date : 2024-04-23 DOI:10.1002/vjch.202300394
L. Lamiri, B. Kahouadji, Oulkhiari Ilham, Abdelhalim Zoukel, L. Benchallal, Salim Ouhenia, A. Souici, Fares Boudjouan, Lamine Mebarki, Bachiri Meriem, Khalida Chabane, Guerbous Lakhdar, Madani Samah
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引用次数: 0

摘要

在本文中,作者采用溶胶-凝胶法,利用乙二醇(EG)和聚乙二醇(PEG)等有机制剂,深入研究了 Y2O3:Sm3+ 纳米粉体的合成。这项深入研究的重点是这些纳米粉体的结构、形态和光致发光特性,并特别考虑了它们在光学设备领域的潜在应用。X 射线衍射图样表明,所有粉末都结晶为纯立方相(Ia-3)。透射电子显微镜(TEM)分析显示,存在尺寸小于 70 纳米的颗粒。具体来说,形态和结构数据表明,用 PEG 制备的纳米粉体的结晶尺寸超过了用 EG 制备的纳米粉体。在探索光致发光特性时,在 λem = 600 nm 处记录的粉末发射光谱显示出两个吸收带,一个是 O2- → Sm3+ 的电荷转移态(CTS)(最大吸收波长为 223 nm),另一个是 Sm3+ 的内部构型转变 4f5-4f5。在这些条件下,4G5/2 → 6H7/2 转换产生的红色/橙色发射占主导地位。与不使用有机制剂的样品相比,使用有机制剂制备的样品的光致发光强度明显提高。最后,色度坐标强调了 Y2O3:Sm3+ 纳米粉体作为照明用荧光粉的巨大潜力。
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Structural and photoluminescence investigation of Y2O3:Sm3+ nano‐powders: Organic agent's effect
In this article, the authors delve into the synthesis of Y2O3:Sm3+ nanopowders using the sol–gel method, employing organic agents such as ethylene glycol (EG) and polyethylene glycol (PEG). This thorough investigation focuses on the structural, morphological, and photoluminescence characteristics of these nanopowders, with particular consideration for their potential applications in the field of optical devices. X‐ray diffraction patterns indicate that all powders crystallize in pure cubic phases (Ia‐3). Transmission electron microscopy (TEM) analysis reveals the presence of particles with dimensions less than 70 nm. Specifically, morphological and structural data suggest that the crystallite size of nanopowders prepared with PEG exceeds that of nanopowders prepared with EG. In exploring the photoluminescence properties, the emission spectra of the powders, recorded at λem = 600 nm, exhibit two absorption bands attributed to the charge transfer state (CTS) from O2− → Sm3+, with a maximum absorption at 223 nm, and to the intraconfigurational transition 4f5‐4f5 of Sm3+. A red/orange emission, attributed to the 4G5/2 → 6H7/2 transition, predominates under these conditions. A significant improvement in the intensity of photoluminescence is notably observed in samples prepared with organic agents compared to those prepared without agents. Finally, chromatic coordinates underscore the strong potential of Y2O3:Sm3+ nanopowders as promising phosphors for lighting applications.
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Vietnam Journal of Chemistry
Vietnam Journal of Chemistry CHEMISTRY, MULTIDISCIPLINARY-
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