Zhong Chuansheng, Xu Yonghui, Wu Xiudi, Yin Shuwen, Zhang Xibao, Zhou Liang, You Hongpeng
State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022, P. R. China.
School of Applied Chemistry and Engineering, University of Science and Technology of China, Hefei, 230026, P. R. China.
Adv Mater. 2024 Mar;36(9):e2309500. doi: 10.1002/adma.202309500. Epub 2023 Dec 13.
There is strong demand for ultraefficient near-infrared (NIR) phosphors with adjustable emission properties for next-generation intelligent NIR light sources. Designing phosphors with large full-width at half-maximum (FWHM) variations is challenging. In this study, novel near-ultraviolet light-emitting diode (LED)-excited NIR phosphors, MgAlGa B O :Cr (MAGBO:Cr ), with three emission centers achieve ultra-narrowband (FWHM = 29 nm) to ultra-broadband (FWHM = 260 nm) emission with increasing Cr concentration. Gaussian fitting and decay time analysis reveal the alteration in the FWHM, which is attributed to the energy transfer occurring between the three emission centers. The distinct thermal quenching behaviors of the three emission centers are revealed through the temperature-dependent decay times. The ultra-broadband NIR phosphor MAGBO:0.05Cr exhibits high thermal stability (85%, 425 K) and exceptional external quantum efficiency of 68.5%. An NIR phosphor-converted LED (pc-LED) is fabricated using MAGBO:0.05Cr phosphor, exhibiting a remarkable NIR output power of 136 mW at 600 mA in ultra-broadband NIR pc-LEDs. This study describes the preparation of highly efficient phosphors and provides a further understanding of the tunable FWHM, which is vital for high-performance NIR phosphors with versatile applications.
对于具有可调节发射特性的超高效近红外(NIR)磷光体,用于下一代智能近红外光源的需求强劲。设计具有大变半高宽(FWHM)的磷光体具有挑战性。在本研究中,新型近紫外发光二极管(LED)激发的近红外磷光体MgAlGaBO:Cr(MAGBO:Cr),具有三个发射中心,随着Cr浓度的增加,实现了从超窄带(FWHM = 29 nm)到超宽带(FWHM = 260 nm)的发射。高斯拟合和衰减时间分析揭示了FWHM的变化,这归因于三个发射中心之间发生的能量转移。通过与温度相关的衰减时间揭示了三个发射中心不同的热猝灭行为。超宽带近红外磷光体MAGBO:0.05Cr表现出高热稳定性(85%,425 K)和68.5%的优异外量子效率。使用MAGBO:0.05Cr磷光体制备了近红外磷光体转换LED(pc-LED),在超宽带近红外pc-LED中,在600 mA时表现出136 mW的显著近红外输出功率。本研究描述了高效磷光体的制备,并进一步理解了可调谐FWHM,这对于具有广泛应用的高性能近红外磷光体至关重要。