Chunchun Chen, Zeyu Lyu, Zheng Lu, Xiaowei Zhang, Dashuai Sun, Shuai Wei, Fang Guan, Hongpeng You
Mn 4+ -doped oxide red phosphors exhibit significant potential in full-spectrum lighting and plant growth lighting. Far-red emitting CaLuAlO 4:Mn 4+ phosphor was obtained by a high-temperature solid-phase method. In this structure, Mn 4+ occupies the position of [AlO 6 ], and exhibits two broad excitation bands in the 250–600 nm range. Upon 365 nm near-ultraviolet excitation, this phosphor exhibits far-red emission near 707 nm. Its internal quantum efficiency and absorptivity were measured to be 55.04% and 81.48%, respectively. CaLuAlO 4:Mn 4+ can compensate for the far-red emission deficiency of WLEDs, attaining a low correlated color temperature (CCT = 3548 K) and a high color rendering index ( R a = 96.5). Plant growth experiments using packaged far-red LED verified its positive effects on plant growth. These results demonstrate the potential of CaLuAlO 4:Mn 4+ red phosphors for applications in full-spectrum lighting and plant growth lighting.