2011Advanced MaterialsRequires access

Efficient and Color‐Tunable Oxyfluoride Solid Solution Phosphors for Solid‐State White Lighting

Won Bin Im, Nathan C. George, Joshua A. Kurzman, Stuart Brinkley, Alexander Mikhailovsky, Jerry Hu, Bradley F. Chmelka, Steven P. DenBaars, Ram Seshadri

Open publisher page 334 citations

Abstract

A solid solution strategy helps increase the efficiency of Ce3+ oxyfluoride phosphors for solid-state white lighting. The use of a phosphor-capping architecture provides additional light extraction. The accompanying image displays electroluminescence spectra from a 434-nm InGaN LED phosphor that has been capped with the oxyfluoride phosphor.

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What this paper is about

A solid solution strategy helps increase the efficiency of Ce3+ oxyfluoride phosphors for solid-state white lighting. The use of a phosphor-capping architecture provides additional light extraction. The accompanying image displays electroluminescence spectra from a 434-nm InGaN LED phosphor that has been capped with the oxyfluoride phosphor.

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OpenAlex reports 334 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A solid solution strategy helps increase the efficiency of Ce3+ oxyfluoride phosphors for solid-state white lighting. The use of a phosphor-capping architecture provides additional light extraction. The accompanying image displays electroluminescence spectra from a 434-nm InGaN LED phosphor that has been capped with the oxyfluoride phosphor.

Key concepts: Phosphor, Materials science, Solid-state lighting, Solid-state, Electroluminescence, Optoelectronics, White light, Solid solution

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Efficient and Color‐Tunable Oxyfluoride Solid Solution Phosphors for Solid‐State White Lighting — Research Paper | ScholarLens