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用于白光发光二极管和温度传感的多峰宽带红色荧光粉YSiN:Pr

Multi-peaked broad-band red phosphor YSiN:Pr for white LEDs and temperature sensing.

作者信息

Sun Dashuai, Zhang Liangliang, Hao Zhendong, Wu Hao, Wu Huajun, Luo Yongshi, Yang Lin, Zhang Xia, Liu Feng, Zhang Jiahua

机构信息

State Key Laboratory of Luminescence and Applications, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China.

出版信息

Dalton Trans. 2020 Dec 22;49(48):17779-17785. doi: 10.1039/d0dt03532g.

Abstract

The indispensable broad-band red phosphors for LED lighting generally show a long emission tail for wavelengths longer than 650 nm, which consumes excitation energy but contributes little luminance. Here, we report, for the first time, a broad red emission band with a steep falling edge at 652 nm, formed of widely distributed 1D2 → 3H4 emission lines of Pr3+ in Y3Si6N11 due to a large Stark splitting of the 3H4 (930 cm-1) and 1D2 (725 cm-1) levels. The red emission exhibits a 43 nm bandwidth, which is the widest in Pr3+-doped phosphors reported so far. The red Y3Si6N11:Pr3+ phosphor was applied for the fabrication of 310 nm UV chip-based white LEDs, and a high color rendering index of 96 at a low correlated color temperature of 4188 K was achieved. Furthermore, a temperature-sensing scheme was proposed based on the temperature-dependent intensity ratios of the emission lines from the thermally coupled and large Stark splitting levels of the 1D2 state. Relative sensitivities as a function of temperature were studied in the range of 93-473 K. The findings of this study indicate that Y3Si6N11:Pr3+ is an attractive broad-band red phosphor for both high color rendering white LEDs and temperature sensing applications.

摘要

用于LED照明不可或缺的宽带红色荧光粉,对于波长大于650 nm的光通常显示出较长的发射拖尾,这消耗了激发能量但对亮度贡献不大。在此,我们首次报道了一种在652 nm处具有陡峭下降边缘的宽带红色发射带,它由Y3Si6N11中Pr3+广泛分布的1D2→3H4发射线形成,这是由于3H4(930 cm-1)和1D2(725 cm-1)能级的大斯塔克分裂所致。该红色发射呈现出43 nm的带宽,这是迄今为止报道的Pr3+掺杂荧光粉中最宽的。红色Y3Si6N11:Pr3+荧光粉被应用于基于310 nm紫外芯片的白光LED制造,并在4188 K的低相关色温下实现了96的高显色指数。此外,基于1D2态热耦合和大斯塔克分裂能级发射线的强度比与温度的关系,提出了一种温度传感方案。在93 - 473 K范围内研究了相对灵敏度随温度的变化。本研究结果表明,Y3Si6N11:Pr3+对于高显色白光LED和温度传感应用而言是一种有吸引力的宽带红色荧光粉。

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