Materials & Energyarticle2026-08-08

Cation‐Engineered Narrow‐Band Green Emitting Phosphor Toward High‐Performance Laser‐Driven Displays

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Abstract

ABSTRACT Wide color gamut and high brightness are critical performance metrics for advanced displays like projectors. Combining narrow‐band green and red color converters with a blue laser‐driven light source is one of the most effective solutions to achieve these goals. In this work, an efficient UCr 4 C 4 ‐type narrow‐band green‐emitting phosphor Cs 2 NaK(Li 3 SiO 4 ) 4 :Eu 2+ was obtained by partially substituting Na + with Cs + in cyan‐emitting CsNa 2 K(Li 3 SiO 4 ) 4 :Eu 2+ . This cation‐substitution strategy preferentially directs Eu 2+ ions to occupy the Na sites over the K sites, resulting in a transition from dual peaks at 485 and 527 nm to a single peak at 527 nm. The site occupation evolution mechanism of Eu 2+ was investigated using Rietveld structural refinement, low‐temperature transient and steady‐state photoluminescence spectroscopy, and density functional theory (DFT) calculations. Under 450 nm excitation, Cs 2 NaK(Li 3 SiO 4 ) 4 :Eu 2+ phosphor demonstrates a high external quantum efficiency (EQE) of 38.1% and good thermal stability (emission intensity retains 84.5% @ 145°C). When fabricated into a color wheel and excited by a 450 nm blue laser with a power density of 27.1 W/mm 2 , the phosphor achieves a luminous flux of 1677.6 lm and a luminous efficacy of 98.7 lm/W, demonstrating its potential for laser‐driven projection displays.

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View paper (DOI)OpenAlexLaser & Photonics ReviewPublished 2026-08-08

Authors: Jiarui Duan, Pengfei Wang, Jianhua Liu, Deyin Wang, Hang Lin, Yuhua Wang

Institutions: Lanzhou University, Lanzhou University of Technology, Fujian Institute of Research on the Structure of Matter