已发表成果:
WOK 论文 51 篇;中文核心 9 篇;其它论文 6 篇;
Efficient Sr0.5 Ca0.5 AlSiN3:Eu2+red-emitting ceramics for high-power solid-state lighting
Fabrication of LuAG:Ce-Al<sub>2</sub>O<sub>3</sub> eutectics via laser-heated pedestal growth technique for high-power laser-driven lighting
Phosphor Ceramics for Laser-Driven Lighting
Breaking Through the Luminescence Stability Bottleneck of Oxyfluoride Phosphor for Sun-Like Led Lighting
A super-high brightness and excellent colour quality laser-driven white light source enables miniaturized endoscopy
Broadband orange-emitting Sr<sub>3</sub>Si<sub>8</sub>O<sub>4</sub>N<sub>10</sub>:Eu<SUP>2+</SUP> phosphor discovered by a modified single-particle-diagnosis approach
Discovering Novel Phosphors by Single-Particle Diagnosis and High-Throughput Calculations
Pixelated Phosphor Converter for Laser-Driven Adaptive Lighting
Small-sized nitride phosphors achieving mini-LED backlights with superhigh brightness and ultralong durability
Thermally robust Al2O3-La3Si6N11:Ce3+ composite phosphor-in-glass (PiG) films for high-power and high-brightness laser-driven lighting
Biphasic Lu3MgAl3SiO12-based transparent ceramics for uniform laser-diode-driven white lighting
Bi-color phosphor-in-glass films achieve superior color quality laser-driven stage spotlights
A general method for rapid synthesis of refractory carbides by low-pressure carbothermal shock reduction
Fine-grained phosphors for red-emitting mini-LEDs with high efficiency and super-luminance
Achieving High Light Uniformity Laser-driven White Lighting Source by Introducing Secondary Phases in Phosphor Converters
Efficient near-infrared phosphors discovered by parametrizing the Eu(II) 5d-to-4f energy gap
Laser-Driven High-Brightness Green Light for Underwater Wireless Optical Communication
Thermally Robust Orange-Red-Emitting Color Converters for Laser-Driven Warm White Light with High Overall Optical Properties
MxLa1-xSiO2-yNz (M = Ca/Sr/Ba): Elucidating and Tuning the Structure and Eu2+ Local Environments to Develop Full-Visible Spectrum Phosphors
Sandwich structured phosphor-in-glass films enabling laser lighting with superior optical properties
Microstructure tailoring of red-emitting AlN-CaAlSiN3:Eu2+ composite phosphor ceramics with higher optical properties for laser lighting
Orange-emitting MgO-(Sr,Ba)(3)SiO5:Eu composite phosphor ceramics for turn signals and warm white laser lighting
Porous Ce:YAG ceramics with controllable microstructure for high-brightness laser lighting
Hot Isostatic Pressing Post-treatment and Performance of Red-emitting AlN-CaAlSiN3:Eu Composite Phosphor Ceramics
Green-yellow Emission Ce:LuAG Transparent Ceramics for High-brightness Solid-state Lighting
Effect of Laser Spot Regulation on Evaluation of Laser Phosphors
Phosphor Ceramics for High-power Solid-state Lighting
Unraveling the Luminescence Quenching of Phosphors under High-Power-Density Excitation
Ternary solid solution phosphors Ca1-x-yLixAl1-x-ySi1+x+yN3-yOy:Ce3+ with enhanced thermal stability for high-power laser lighting
Highly thermal conductive red-emitting AlN-CaAlSiN3:Eu2(+) composite phosphor ceramics for high-power laser-driven lighting
Discovery of a Ce3+-activated red nitride phosphor for high-brightness solid-state lighting
Realizing red/orange emission of Eu2+/Ce(3+)in La26-xSrxSi41Ox+1N80-x(x=12.72-12.90) phosphors for high color rendition white LEDs
Unraveling the Luminescence Quenching of Phosphors under High-Power-Density Excitation
YAGG:Ce Phosphor-in-YAG Ceramic: An Efficient Green Color Converter Suitable for High-Power Blue Laser Lighting
Past and Present of Nitride Phosphors: New Inspirations on Materials Discovery and Applications
A solid-state colorimetric fluorescence Pb2+-sensing scheme: mechanically-driven CsPbBr(3)nanocrystallization in glass
Interstitial Site Engineering for Creating Unusual Red Emission in La3Si6N11:Ce3+
Transparent YAG:Ce ceramic with designed low light scattering for high-power blue LED and LD applications
Review-Data-Driven Discovery of Novel Phosphors
A search for extra-high brightness laser-driven color converters by investigating thermally-induced luminance saturation
Data-Driven Discovery of Full-Visible-Spectrum Phosphor
The effect of the porosity on the Al2O3-YAG:Ce phosphor ceramic: Microstructure, luminescent efficiency, and luminous stability in laser-driven lighting
Thermally self-managing YAG:Ce-Al2O3 color converters enabling high-brightness laser-driven solid state lighting in a transmissive configuration
Warm White Light with a High Color-Rendering Index from a Single Gd3Al4GaO12:Ce3+ Transparent Ceramic for High-Power LEDs and LDs
Unique Design Strategy for Laser-Driven Color Converters Enabling Superhigh-Luminance and High-Directionality White Light
A new CaF2-YAG:Ce composite phosphor ceramic for high-power and high-color-rendering WLEDs
Discovery of a novel nitride phosphor by high throughput calculations
Phosphor-in-Glass (PiG) films for high-power and high-luminance laser lighting and display
Achieving efficient β-Sialon:Eu phosphors for high-brightness LCD backlights by reducing the Eu3+ luminescence killer
La3Si6N1:Ce phosphor-in-glass film as a novel nitride color converter for high-brightness laser-driven automotive lighting and display
Thermally robust composite phosphor ceramic makes solid state laser lighting come true
激光照明用荧光陶瓷研究进展
硅酸盐学报,0454-5648,2024-02-08.单颗粒诊断法和高通量计算发现新型荧光粉
硅酸盐学报,0454-5648,2022-11-02.第二相引入荧光转换材料实现激光驱动高均匀性白光光源(英文)
无机材料学报,1000-324X,2022-04-13.第二相引入荧光转换材料实现激光驱动高均匀性白光光源(英文)
无机材料学报,1000-324X,2022-04-13.AlN-CaAlSiN3∶Eu红色复相荧光陶瓷的热等静压后处理及其性能
发光学报,1000-7032,2021-10-15.光斑调控对激光荧光材料性能评价的影响
发光学报,1000-7032,2021-10-15.高亮度固态照明用黄绿光发射Ce∶LuAG透明陶瓷(英文)
发光学报,1000-7032,2021-10-15.大功率固态照明用荧光陶瓷研究进展
无机材料学报,1000-324X,2021-03-19.氮化物荧光粉的前世今生:材料探索和应用的新启示
发光学报,1000-7032,2020-06-10.基于稀土发光测温技术的研究进展与展望
硅酸盐学报,0454-5648,2025-03-07.激光荧光材料的研究
中国稀土学会2021学术年会论文摘要集,,2021-10-22.材料力学教学中培养学生能力的几点体会
才智,1673-0208,2021-09-05.高发光饱和阈值荧光粉的设计与激光照明应用
中国稀土学会2020学术年会暨江西(赣州)稀土资源绿色开发与高效利用大会摘要集,,2020-10-19.稀土发光材料的新应用
中国稀土学会2020学术年会暨江西(赣州)稀土资源绿色开发与高效利用大会摘要集,,2020-10-19.激光照明用发光材料的设计与应用
第九届国际稀土开发与应用研讨会暨2019中国稀土学会学术年会摘要集,,2019-05-15.