Highly heat-dissipating phosphor-in-glass film converter for high‐luminance laser lighting
暂无分享,去创建一个
[1] Feng Huang,et al. Novel Color Converters for High Brightness Laser‐Driven Projection Display: Transparent Ceramics–Glass Ceramics Film Composite , 2023, Advanced Functional Materials.
[2] Shuxing Li,et al. Small-sized nitride phosphors achieving mini-LED backlights with superhigh brightness and ultralong durability , 2023, Materials Today.
[3] Shaoxiong Wang,et al. Patterned phosphor-in-glass films with efficient thermal management for high-power laser projection display , 2023, Journal of Advanced Ceramics.
[4] Shuxing Li,et al. A super-high brightness and excellent colour quality laser-driven white light source enables miniaturized endoscopy. , 2023, Materials horizons.
[5] W. Xiang,et al. Tricolor Pattern Design: Ultrahigh Thermal Conductivity Phosphor-in-Glass Film for Laser Illumination , 2023, ACS Sustainable Chemistry & Engineering.
[6] Taoli Deng,et al. Pixelated Phosphor Converter for Laser‐Driven Adaptive Lighting , 2023, Laser & Photonics Reviews.
[7] Yang Peng,et al. Laser spot associated high-saturation phosphor-in-glass film for transmissive and reflective high-brightness laser lighting , 2023, Journal of Advanced Ceramics.
[8] Yang Peng,et al. Microstructured Interface Modification of Laser-Driven Phosphor-In-Glass-Film for Ultra-High-Efficiency White Lighting , 2023, Journal of Alloys and Compounds.
[9] Daqin Chen,et al. YAG:Ce PiGF@Alumina‐Substrate in a Reflection Mode for High‐Brightness Laser‐Driven Projection Display , 2023, Advanced Materials Technologies.
[10] Yang Peng,et al. High‐Performance Phosphor‐in‐Glass Film on Thermoelectric Generator for Non‐Radiative Energy Recycling in Laser Lighting , 2023, Advanced Materials Technologies.
[11] Yu Wang,et al. Vigorous high-efficiency YAGG:Ce phosphor-in-glass film for next-generation laser lighting applications , 2023, Ceramics International.
[12] Yang Peng,et al. Nitride phosphor-in-glass films enabling high-performance white light in transmissive and reflective laser lighting , 2022, Ceramics International.
[13] Shuxing Li,et al. Laser Phosphors for Next-Generation Lighting Applications , 2022, Accounts of Materials Research.
[14] Mingxiang Chen,et al. Combined fluid flow simulation with electrochemical measurement for mechanism investigation of high-rate Cu pattern electroplating , 2022, Journal of the Taiwan Institute of Chemical Engineers.
[15] Yang Peng,et al. Unique sandwich design of high-efficiency heat-conducting phosphor-in-glass film for high-quality laser-driven white lighting , 2022, Journal of Advanced Ceramics.
[16] Qingming Huang,et al. Highly Crystalline Y3Al5O12:Ce3+ Phosphor‐in‐Glass Film: A New Composite Color Converter for Next‐Generation High‐Brightness Laser‐Driven Lightings , 2022, Laser & Photonics Reviews.
[17] Yang Peng,et al. Highly reflective interface design for phosphor-in-glass converter enabling ultrahigh efficiency laser-driven white lighting , 2022, Journal of the European Ceramic Society.
[18] Yang Peng,et al. Heat-conducting LSN:Ce-in-glass film on AlN substrate for high-brightness laser-driven white lighting , 2022, Ceramics International.
[19] Yu Wang,et al. High-performance and heat-resistant Ce:YAG phosphor in glass for laser lighting , 2022, Journal of Alloys and Compounds.
[20] Yang Peng,et al. Enhancing Opto-Thermal Performances of White Laser Lighting by High Reflective Phosphor Converter , 2022, SSRN Electronic Journal.
[21] Pengfei Yu,et al. High efficiency green-emitting phosphor-in-glass films for high-power solid-state laser lighting , 2022, Ceramics International.
[22] Yu Wang,et al. Highly thermally stable red phosphor-in-glass films for high-power laser lighting , 2022, Journal of Luminescence.
[23] R. Xie,et al. Thermally Robust Orange‐Red‐Emitting Color Converters for Laser‐Driven Warm White Light with High Overall Optical Properties , 2022, Laser & Photonics Reviews.
[24] Mingxiang Chen,et al. Computational and experiments exploration of convection on Cu filling characteristics of multiple aspect-ratio micro through-holes , 2022, Electrochimica Acta.
[25] Xinrui Ding,et al. Enhancing Thermal Stability of Laser-Driven Phosphor Converter by Utilizing Copper Powder Sintering Framework/Paraffin , 2022, IEEE Transactions on Electron Devices.
[26] Qiang-Qiang Zhu,et al. Sandwich structured phosphor-in-glass films enabling laser lighting with superior optical properties , 2022, Ceramics International.
[27] W. Xiang,et al. A thermally robust phosphor-in-glass film with high luminous efficiency for high-power blue laser diodes lighting , 2021, Applied Physics Letters.
[28] Yong Tang,et al. Research on Laser Illumination Based on Phosphor in Metal (PiM) by Utilizing the Boron Nitride-Coated Copper Foams. , 2021, ACS applied materials & interfaces.
[29] Yongge Cao,et al. Phosphor converters for laser driven light sources , 2021 .
[30] Yong Tang,et al. Phosphor-in-glass (PIG) converter sintered by a fast Joule heating process for high-power laser-driven white lighting. , 2021, Optics express.
[31] R. Xie,et al. Unraveling the Luminescence Quenching of Phosphors Under High-Power-Density Excitation , 2020, Acta Materialia.
[32] Xiaobing Luo,et al. Heat Dissipation Enhancement of Phosphor-Converted White Laser Diodes by Thermally Self-Managing Phosphor-in-Glass , 2020, IEEE Transactions on Electron Devices.
[33] Xiaobing Luo,et al. Facile fabrication of heat-conducting phosphor-in-glass with dual-sapphire plates for laser-driven white lighting , 2019, Journal of Alloys and Compounds.
[34] R. Xie,et al. On the luminance saturation of phosphor-in-glass (PiG) films for blue-laser-driven white lighting: Effects of the phosphor content and the film thickness , 2019, Journal of the European Ceramic Society.
[35] Xiaobing Luo,et al. Stable and efficient all-inorganic color converter based on phosphor in tellurite glass for next-generation laser-excited white lighting , 2018, Journal of the European Ceramic Society.
[36] Y. Liu,et al. High-power laser-driven phosphor-in-glass for excellently high conversion efficiency white light generation for special illumination or display backlighting , 2018 .
[37] Takashi Takeda,et al. Unique Color Converter Architecture Enabling Phosphor-in-Glass (PiG) Films Suitable for High-Power and High-Luminance Laser-Driven White Lighting. , 2018, ACS applied materials & interfaces.
[38] Young-Moon Yu,et al. Strong thermal stability of Lu 3 Al 5 O 12 :Ce 3+ single crystal phosphor for laser lighting , 2017 .
[39] S. Denbaars,et al. High luminous flux from single crystal phosphor-converted laser-based white lighting system. , 2016, Optics express.
[40] R. F. Karlicek,et al. Toward Smart and Ultra‐efficient Solid‐State Lighting , 2014 .
[41] Daqin Chen,et al. A new‐generation color converter for high‐power white LED: transparent Ce3+:YAG phosphor‐in‐glass , 2014 .
[42] Shuxing Li,et al. Bi-Color Phosphor-in-Glass Films Achieve Superior Color Quality Laser-Driven Stage Spotlights , 2022, SSRN Electronic Journal.