Fabrication and luminescent properties of highly transparent novel high-entropy (Lu0.2Y0.2Gd0.2Yb0.2Er0.2)2O3 ceramic

IF 11.2 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Materials Science & Technology Pub Date : 2024-11-23 DOI:10.1016/j.jmst.2024.10.033
Hong-Lan Liu, Lin-Lin Zhu, Wei-Ming Guo, Hua-Tay Lin
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Abstract

The highly transparent novel high-entropy (Lu0.2Y0.2Gd0.2Yb0.2Er0.2)2O3 ceramic was successfully fabricated by the addition of 3 at.% ZrO2 and 10 at.% La2O3 introduced as sintering additives via vacuum sintering. A single-phase solid solution cubic structure of the ceramic was obtained with a relative density of 99.95 % and an average grain size of 6.91±3.28 µm. The grain boundary of the (Lu0.2Y0.2Gd0.2Yb0.2Er0.2)2O3 ceramic was clean with a thickness of only 1.3 nm. Further observations revealed uniform distribution of all elements in the grains, and the presence of La and Zr segregation (1.5 nm thick) at few grain boundaries, but causing very little light scattering. The in-line transmittance of high-entropy (Lu0.2Y0.2Gd0.2Yb0.2Er0.2)2O3 ceramic reached 80 % at 1100 nm, which was 98.7 % of the theoretical value of Er2O3 single crystal. Also, there were fluorescence emissions observed in the ultraviolet (311 nm), visible (563, 622 nm), and near-infrared (1032, 1535 nm) regions. In addition, the intense red emission and weak green emission were detected, and the broad emission with a peak at 1.5 μm was attributed to Stark splitting of Er3+ ions, so the corresponding mechanism was discussed. Results obtained suggest that the highly transparent novel high-entropy (Lu0.2Y0.2Gd0.2Yb0.2Er0.2)2O3 ceramic fabricated in this study could have broad application prospects in optical applications such as scintillators, up-conversion luminescent materials, and infrared lasers.

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高透明新型高熵 (Lu0.2Y0.2Gd0.2Yb0.2Er0.2)2O3 陶瓷的制备与发光特性
通过真空烧结,加入 3%的 ZrO2 和 10%的 La2O3 作为烧结添加剂,成功制备了高透明度的新型高熵 (Lu0.2Y0.2Gd0.2Yb0.2Er0.2)2O3 陶瓷。获得的陶瓷为单相固溶体立方结构,相对密度为 99.95 %,平均晶粒大小为 6.91±3.28 µm。(Lu0.2Y0.2Gd0.2Yb0.2Er0.2)2O3陶瓷的晶界干净整洁,厚度仅为1.3纳米。进一步观察发现,所有元素在晶粒中分布均匀,在少数晶粒边界存在 La 和 Zr 偏析(1.5 nm 厚),但造成的光散射非常小。高熵 (Lu0.2Y0.2Gd0.2Yb0.2Er0.2)2O3 陶瓷在 1100 纳米波长处的在线透射率达到 80%,是 Er2O3 单晶理论值的 98.7%。此外,在紫外线(311 纳米)、可见光(563、622 纳米)和近红外(1032、1535 纳米)区域也观察到了荧光发射。此外,还检测到了强烈的红色发射和微弱的绿色发射,并将 1.5 μm 处的宽发射峰归因于 Er3+ 离子的斯塔克分裂,从而探讨了相应的机理。研究结果表明,本研究制备的高透明新型高熵 (Lu0.2Y0.2Gd0.2Yb0.2Er0.2)2O3 陶瓷在闪烁体、上转换发光材料和红外激光器等光学应用领域具有广阔的应用前景。
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来源期刊
Journal of Materials Science & Technology
Journal of Materials Science & Technology 工程技术-材料科学:综合
CiteScore
20.00
自引率
11.00%
发文量
995
审稿时长
13 days
期刊介绍: Journal of Materials Science & Technology strives to promote global collaboration in the field of materials science and technology. It primarily publishes original research papers, invited review articles, letters, research notes, and summaries of scientific achievements. The journal covers a wide range of materials science and technology topics, including metallic materials, inorganic nonmetallic materials, and composite materials.
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