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用于基于蓝芯片的磷光体转换固态白光照明的铈激活的SrLuAlScSiO蓝绿色发光石榴石结构无机磷光体材料

Ce-Activated SrLuAlScSiO Cyan-Green-Emitting Garnet-Structured Inorganic Phosphor Materials toward Application in Blue-Chip-Based Phosphor-Converted Solid-State White Lighting.

作者信息

Chen Xiaoyuan, Huang Xiaoyong

机构信息

College of Electronic Information and Optical Engineering, Taiyuan University of Technology, Taiyuan 030024, People's Republic of China.

出版信息

Inorg Chem. 2024 Mar 25;63(12):5743-5752. doi: 10.1021/acs.inorgchem.4c00322. Epub 2024 Mar 13.

Abstract

Phosphor-converted white-light-emitting diodes (WLEDs) with superhigh color rendering index (CRI) are the ongoing pursuit of next-generation solid-state lighting. One of the most important challenges is the limited improvement in CRI on account of the absence of a cyan component in the typical commercial combination. Here, a bright broad-band cyan-green-emitting phosphor with cubic garnet structure, SrLuAlScSiO:Ce (SLASSO:Ce), was successfully reported, which can compensate for the absence of cyan cavity in the 480-520 nm blue-green emission region. With 439 nm blue-light irradiation, the as-fabricated SLASSO:Ce phosphor yields a broad-band cyan-green emission with the maximum emission peak positioned at 525 nm and an appropriate full width at half-maximum (fwhm) of 111 nm, capable of providing more cyan emission component without sacrificing green emission. Meanwhile, the optimal SLASSO:2%Ce phosphor features CIE color coordinates of (0.3254, 0.5470) with cyan-green hue, along with a high internal quantum efficiency of up to 93%. Additionally, thermal stability measurements at different temperatures reveal that the luminescence emission intensity of the proposed phosphor retains 44% of its original integral emission intensity at 423 K with respect to room temperature, while also demonstrating an excellent color stability (Δ = 5.4 × 10). This work shows that the highly efficient SLASSO:Ce garnet phosphor can be utilized as a potential cyan-green-emitting phosphor for filling the cyan gap, resulting in the construction of a high-quality warm WLED with high CRI for "human-centric" sunlight-like full-spectrum solid-state illumination.

摘要

具有超高显色指数(CRI)的磷光转换白光发光二极管(WLED)是下一代固态照明的持续追求目标。最重要的挑战之一是,由于典型商业组合中缺少青色成分,显色指数的提升有限。在此,成功报道了一种具有立方石榴石结构的明亮宽带蓝绿色发光磷光体,即SrLuAlScSiO:Ce(SLASSO:Ce),它可以弥补480-520nm蓝绿色发射区域中青色空缺。在439nm蓝光照射下,制备的SLASSO:Ce磷光体产生宽带蓝绿色发射,最大发射峰位于525nm,半高宽(fwhm)为111nm,能够在不牺牲绿色发射的情况下提供更多青色发射成分。同时,最佳的SLASSO:2%Ce磷光体的CIE色坐标为(0.3254,0.5470),具有蓝绿色调,内部量子效率高达93%。此外,在不同温度下的热稳定性测量表明,所提出的磷光体在423K时的发光发射强度相对于室温保留了其原始积分发射强度的44%,同时还表现出出色的颜色稳定性(Δ = 5.4 × 10)。这项工作表明,高效的SLASSO:Ce石榴石磷光体可作为潜在的蓝绿色发射磷光体用于填补青色空缺,从而构建用于“以人为本”的类太阳光全光谱固态照明的高显色指数高质量暖WLED。

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