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SrLiScBO:Ce/Tb:一种用于发光二极管和场发射显示器的具有高能量转移效率和稳定性的绿色发光荧光粉。

SrLiScBO:Ce/Tb: A Green-Emitting Phosphor with High Energy Transfer Efficiency and Stability for LEDs and FEDs.

作者信息

Chen Hang, Wang Yuhua

机构信息

National & Local Joint Engineering Laboratory for Optical Conversion Materials and Technology , Lanzhou University , Lanzhou , 730000 , People's Republic of China.

Key Laboratory for Special Function Materials and Structural Design of the Ministry of Education , Lanzhou University , Lanzhou , 730000 , People's Republic of China.

出版信息

Inorg Chem. 2019 Jun 3;58(11):7440-7452. doi: 10.1021/acs.inorgchem.9b00639. Epub 2019 May 10.

Abstract

Exploring new, efficient, and stable phosphors is important and meaningful work for both LEDs and FEDs. Here, the new Ce/Tb-codoped green-emitting phosphor SrLiScBO with high energy transfer efficiency and outstanding stability was designed and prepared by a solid-state reaction. The phosphors show a broad excitation spectrum in the range of 235-375 nm and a narrow green emission spectrum around 544 nm. The strong Tb emission with weak Ce emission and the decreasing lifetime of Ce indicate that the samples have high energy transfer efficiency up to more than 90%. The green emission intensity at 250 °C can keep 75% of its intensity at room temperature with changeless color coordinates, which reveals that the phosphors have excellent thermal stability and color stability. The CL performance indicates that the phosphor possesses high saturation current and saturation voltage with good color stability, and a related luminescence mechanism was proposed to explain the remarkable CL properties. On the basis of the outstanding luminescence performance and thermal and color stability in PL and CL, the phosphor shows promise for applications in LEDs and FEDs.

摘要

探索新型、高效且稳定的磷光体对于发光二极管(LED)和场发射显示器(FED)而言都是重要且有意义的工作。在此,通过固态反应设计并制备了具有高能量转移效率和出色稳定性的新型铈/铽共掺杂绿色发光磷光体SrLiScBO。这些磷光体在235 - 375 nm范围内呈现出宽激发光谱,在544 nm左右呈现出窄绿色发射光谱。强铽发射且弱铈发射以及铈寿命的降低表明样品具有高达90%以上的高能量转移效率。在250°C时绿色发射强度可保持其室温强度的75%,且色坐标不变,这表明磷光体具有出色的热稳定性和颜色稳定性。阴极发光(CL)性能表明该磷光体具有高饱和电流和饱和电压以及良好的颜色稳定性,并提出了相关发光机制来解释显著的CL特性。基于在光致发光(PL)和CL中出色的发光性能以及热稳定性和颜色稳定性,该磷光体在LED和FED应用中展现出前景。

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