余辉
光电子学
材料科学
发光
存水弯(水管)
纳米技术
工程物理
光学
发光二极管
钥匙(锁)
稀缺
计算机科学
光致发光
环境科学
作者
Fangnan Shen,Zihao Chen,Shoushun Wang,Meifang Yang,Yu–Xin Chen,Wen-Guang Li,Tian Tian
出处
期刊:
[Elsevier BV]
日期:2026-08-01
卷期号:2 (8): 100261-100261
标识
DOI:10.1016/j.revmat.2026.100261
摘要
Inorganic rare-earth afterglow materials can emit light continuously after the removal of external excitation, making them attractive for optoelectronic applications including low-power displays, visual signaling, and plant light regulation. Their performance arises from the coupled effects of the host lattice, rare-earth ion energy levels, trap state distributions, and composite structures rather than relying solely on the luminescent centers themselves. In recent years, host-emitter energy-level matching, defect engineering, and composite-structure optimization have significantly improved the emission range, afterglow lifetime, and environmental stability of these materials. This review outlines the composition of rare-earth afterglow materials and the fundamental afterglow process, then summarizes recent advances in emission-band regulation, carrier storage and release, and structural optimization. Representative applications in lighting and display devices, transportation and outdoor signage, plant light regulation and smart agriculture are discussed. Finally, key challenges are highlighted, including the scarcity of efficient red and near-infrared afterglow systems, the difficulty of quantitatively characterizing trap structures, and the need for improved long-term stability and device integration. This review aims to clarify structure-property-function relationships in rare-earth afterglow materials and provide guidance for the development and implementation of high-performance afterglow systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI