Cold-Sintered phosphor film@Cu converter for ultra-high-brightness laser illumination

Abstract Phosphor ceramic has been regarded as a promising color converter for high-quality laser illumination, but it often suffers from optothermal performance degradation during high-temperature sintering process. Herein, an optothermal-enhanced cold-sintered phosphor film@Cu (PF@Cu) converter is developed. A low-temperature (150℃) cold sintering process (CSP) was introduced and tunable composite pastes were prepared with geopolymer, alkali activator, and phosphor materials. High-performance yellow-emitting PF@Cu (Y-PF@Cu) and yellow/red-emitting PF@Cu (Y/R-PF@Cu) converters were prepared with densified PFs that tightly integrated with the Cu substrate while effectively preserving the intrinsic luminescent properties of phosphors. The optimized Y-PF@Cu converter achieves a record luminous flux (LF) of 9624.7 lm@35 W/mm2, a correlated color temperature (CCT) of 5931 K and a color rendering index (CRI) of 60.7. The further optimized Y/R-PF@Cu converter delivers excellent comprehensive performance, including a high thermal conductivity of 50.6 W/(m·K), a LF of 2652.2 [email protected] W/mm2, a CCT of 2604 K, and a significantly improved CRI of 91.2. This work demonstrates the feasibility of CSP for fabricating color converters and provides an efficient strategy for synergistic optothermal optimization in ultra-high-brightness laser-illumination applications.

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Publication Details

Journal
Journal of Advanced Ceramics
Published
2026-09-07
DOI
https://doi.org/10.26599/jac.2026.9221374
Primary Topic
Luminescence Properties of Advanced Materials
Type
article
Field-Weighted Citation Impact
0.00

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article

Cold-Sintered phosphor film@Cu converter for ultra-high-brightness laser illumination

Guankai Wang, Meiqi Ye, Yun Mou, Jiuzhou Zhao et al.
Journal of Advanced Ceramics
Luminescence Properties of Advanced Materials
article

Cold-Sintered phosphor film@Cu converter for ultra-high-brightness laser illumination

Guankai Wang, Meiqi Ye, Yun Mou, Jiuzhou Zhao, Wenhao Zhang, Yang Peng
article en

Abstract

Abstract Phosphor ceramic has been regarded as a promising color converter for high-quality laser illumination, but it often suffers from optothermal performance degradation during high-temperature sintering process. Herein, an optothermal-enhanced cold-sintered phosphor film@Cu (PF@Cu) converter is developed. A low-temperature (150℃) cold sintering process (CSP) was introduced and tunable composite pastes were prepared with geopolymer, alkali activator, and phosphor materials. High-performance yellow-emitting PF@Cu (Y-PF@Cu) and yellow/red-emitting PF@Cu (Y/R-PF@Cu) converters were prepared with densified PFs that tightly integrated with the Cu substrate while effectively preserving the intrinsic luminescent properties of phosphors. The optimized Y-PF@Cu converter achieves a record luminous flux (LF) of 9624.7 lm@35 W/mm2, a correlated color temperature (CCT) of 5931 K and a color rendering index (CRI) of 60.7. The further optimized Y/R-PF@Cu converter delivers excellent comprehensive performance, including a high thermal conductivity of 50.6 W/(m·K), a LF of 2652.2 [email protected] W/mm2, a CCT of 2604 K, and a significantly improved CRI of 91.2. This work demonstrates the feasibility of CSP for fabricating color converters and provides an efficient strategy for synergistic optothermal optimization in ultra-high-brightness laser-illumination applications.

Journal of Advanced Ceramics
Shenzhen University (CN), Huazhong University of Science and Technology (CN)
Huazhong University of Science and Technology
Openalex Percentile: Top 24%
Luminescence Properties of Advanced Materials
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Cold-Sintered phosphor film@Cu converter for ultra-high-brightness laser illumination — Guankai Wang, Meiqi Ye, et al. · Journal of Advanced Ceramics (2026) | TGRS Research Map | TGRS