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铯基光子学材料研究进展

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铯基光子学材料因其稳定的结构、高的发光量子产率和光捕获效率等特性,在发光二极管、激光、光伏电池等光电领域展现出巨大的应用潜力.在盐湖铯元素有效提取的基础上,设计合成高性能铯基光子学材料,进一步开发其高端应用,探索铯元素的高值化利用,发展新型铯基应用材料是盐湖资源综合利用的重要领域.文章主要对铯基荧光和激光材料、非线性光学材料和光捕获材料等研究现状进行了系统梳理、分析和展望,为盐湖铯资源的规模化开发和高值化利用提供有效参考.
Research Progress of Cesium-Based Photonic Materials
Owing to their stable structures,high luminescence quantum yield and light trapping efficiency and other features,cesium-based photonic materials show significant application potential in optoelectronic fields including light emitting diodes,lasers,photovoltaic cells and so on.Upon effective extraction of cesium element from salt lakes,design and synthesis of cesium-based high-performance photonic materi-als,further exploitation of their cutting-edge application,and exploration of high-value utilization of cesium element and development for new-type cesium-based applied materials is an important field for comprehensive utilization of salt lake resources.In this paper,the research status on cesium-based lumines-cent and lasing materials,nonlinear optical materials and light trapping materials are systematically reviewed,analyzed and prospected.It is hoped to provide an effective reference for the scale-up develop-ment and high-value utilization of salt lake cesium resources.

Cesium compoundActive luminescenceNonlinear opticsLight trapping

徐法峰、庄子宇、王鹏久、高丹丹、冯海涛

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中国科学院青海盐湖研究所,盐湖资源绿色高值利用重点实验室,青海西宁 810008

青海省盐湖资源综合利用工程技术中心,青海 西宁 810008

铯化合物 主动发光 非线性光学 光捕获

国家自然科学基金项目青海省"昆仑英才·高端创新创业人才"计划-培养领军人才项目

5230041896E340GC0101

2024

盐湖研究
中国科学院青海盐湖研究所

盐湖研究

CSTPCD
影响因子:0.319
ISSN:1008-858X
年,卷(期):2024.32(5)