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Light Converting Inorganic Phosphors for White Light-Emitting Diodes

机译:用于白光发光二极管的光转换无机荧光粉

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摘要

White light-emitting diodes (WLEDs) have matched the emission efficiency of florescent lights and will rapidly spread as light source for homes and offices in the next 5 to 10 years. WLEDs provide a light element having a semiconductor light emitting layer (blue or near-ultraviolet (nUV) LEDs) and photoluminescence phosphors. These solid-state LED lamps, rather than organic light emitting diode (OLED) or polymer light-emitting diode (PLED), have a number of advantages over conventional incandescent bulbs and halogen lamps, such as high efficiency to convert electrical energy into light, reliability and long operating lifetime. To meet with the further requirement of high color rendering index, warm light with low color temperature, high thermal stability and higher energy efficiency for WLEDs, new phosphors that can absorb excitation energy from blue or nUV LEDs and generate visible emissions efficiently are desired. The criteria of choosing the best phosphors, for blue (450−480 nm) and nUV (380−400 nm) LEDs, strongly depends on the absorption and emission of the phosphors. Moreover, the balance of light between the emission from blue-nUV LEDs and the emissions from phosphors (such as yellow from Y3Al5O12:Ce3+) is important to obtain white light with proper color rendering index and color temperature. Here, we will review the status of phosphors for LEDs and prospect the future development.
机译:白光发光二极管(WLED)已达到荧光灯的发射效率,并将在未来5到10年内迅速成为家庭和办公室的光源。 WLED提供了具有半导体发光层(蓝色或近紫外(nUV)LED)和光致发光磷光体的发光元件。与传统的白炽灯泡和卤素灯相比,这些固态LED灯比有机发光二极管(OLED)或聚合物发光二极管(PLED)具有许多优势,例如将电能转换为光的效率高,可靠性高,使用寿命长。为了满足WLED的高显色指数,低色温,高热稳定性和更高能量效率的暖光的进一步要求,需要能够吸收来自蓝色或nUV LED的激发能并有效产生可见光的新型荧光粉。为蓝色(450-480 nm)和nUV(380-400 nm)LED选择最佳荧光粉的标准在很大程度上取决于荧光粉的吸收和发射。此外,蓝色nUV LED的发光与荧光粉的发光之间的光平衡(例如Y 3 Al 5 O 12 发出的黄色>:Ce 3 + )对于获得具有适当显色指数和色温的白光非常重要。在这里,我们将回顾LED荧光粉的现状,并展望未来的发展。

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