首页> 外文期刊>Journal of Solid State Chemistry >Rapid synthesis of Ce3+:YAG via CO2 laser irradiation combustion method: Influence of Ce doping and thickness of phosphor ceramic on the performance of a white LED device
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Rapid synthesis of Ce3+:YAG via CO2 laser irradiation combustion method: Influence of Ce doping and thickness of phosphor ceramic on the performance of a white LED device

机译:CE3 +的快速合成:YAG通过CO2激光照射燃烧方法:Ce掺杂和磷光体陶瓷厚度对白色LED装置的性能影响

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摘要

A new, rapid method was reported to produce Y3Al5O12 phosphors doped with different concentrations of Ce3+ (YAG:Ce3+) within 1.5 min via continuous-wave CO2 laser irradiation, in which a CO2 laser is utilised as the combustion source. X-ray powder diffraction confirmed the formation of pure cubic phase in the as-synthesised powder. Thus, laser irradiation plays an important role in optimising reaction kinetics to obtain high-quality crystal with high luminescence intensity. Furthermore, the incorporation of Ce3+ ions into the YAG matrix can be enhanced through sintering powders at 1050 degrees C for 5 h. Optical properties were examined comparatively using photoluminescence emission. Additionally, the performance of white light-emitting diode (LED) can be regulated easily by altering the Ce3+ doping concentration and YAG:Ce3+ layer thickness on blue InGaN LED chip. Excellent white light, which has a CIE coordinate of (0.31, 0.36) that approached the standard WLED values, a colour rendering index of about 69.4, a correlated colour temperature of about 6299 K and a luminous radiation efficiency exceeding 169 lm/W, was obtained for YAG doped with 2 mol% Ce concentration with a coating layer thickness of 1 mm.
机译:报道了一种新的快速制备Y3Al5O12荧光粉的方法,通过连续波CO2激光照射,在1.5分钟内制备出掺杂不同浓度Ce3+(YAG:Ce3+)的Y3Al5O12荧光粉,其中CO2激光被用作燃烧源。X射线粉末衍射证实合成粉末中形成了纯立方相。因此,激光辐照在优化反应动力学以获得高质量、高发光强度的晶体方面起着重要作用。此外,通过在1050℃下烧结粉末5h,可以增强Ce3+离子在YAG基体中的掺入。使用光致发光发射法对光学性能进行了比较研究。此外,通过改变蓝色InGaN LED芯片上的Ce3+掺杂浓度和YAG:Ce3+层厚度,可以很容易地调节白光发光二极管(LED)的性能。对于掺杂有2 mol%Ce浓度且涂层厚度为1 mm的YAG,获得了极好的白光,其CIE坐标为(0.31,0.36),接近标准WLED值,显色指数约为69.4,相关色温约为6299 K,光辐射效率超过169 lm/W。

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