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Rapid, convenient and low-energy preparation of spherical rare earth doped YAG phosphors by a laser sintering method

机译:通过激光烧结法快速,方便地低能量准备球形稀土掺杂YAG磷光体

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In order to overcome the disadvantages of uncontrollable particle size, slow speed and high energy consumption existing in traditional phosphor preparation methods, we successfully prepared YAG:Ce and YAG:Dy phosphors rapidly and conveniently by using a laser sintering method with low energy consumption. The influence of different laser powers (3-27 W), scanning rates (50-800 mm s(-1)), powder thicknesses (50-800 mu m), doping concentrations (0.25-1%), and post-treatments on their phase purity, morphology and optics was investigated. Spherical YAG phosphors with controllable particle size could be obtained through selecting appropriate parameters, and their PL intensity was enhanced by 300% after annealing; the average particle size was decreased to 46 mu m after reducing the powder thickness to 50 mu m. These results suggest that the reaction temperature and preparation period are greatly reduced compared with the conventional solid-state reaction method. A luminous efficiency (LE) of 80 lm W-1 and color rendering index (CRI) of 76.4 can be reached for the fabricated WLED using YAG:Ce phosphor, demonstrating its great potential applications in WLEDs. Interestingly, it is found that YAG:Dy phosphors exhibit red, pink, orange-yellow and pale-yellow emission color under various excitation wavelengths, showing significant potential application in the fields of anti-counterfeiting and fluorescent labeling. In short, according to our research, the laser sintering method has been proved to have a great potential application in the field of phosphor preparation.
机译:为了克服不可控制的粒度的缺点,在传统磷光体制备方法中存在的不可控制的粒度,慢速和高能量消耗,我们通过使用具有低能量消耗的激光烧结方法迅速方便地制备YAG:Ce和YAG:Dy磷光体。不同激光功率(3-27W),扫描速率(50-800mm S(-1)),粉末厚度(50-800μm),掺杂浓度(0.25-1%)和治疗后的影响在它们的相纯度上,调查了形态和光学。通过选择合适的参数可以获得可控粒度的球形YAG磷光体,并在退火后,它们的PL强度提高了300%;在将粉末厚度降至50μm之后,平均粒度降至46μm。这些结果表明,与传统的固态反应方法相比,反应温度和制备期大大降低。可以达到80 LM W-1的发光效率(LE)和76.4的显色指数(CRI),用于使用YAG:CE磷光体的制造WLED,展示其在WLED中的巨大潜在应用。有趣的是,发现YAG:Dy磷光体在各种激发波长下表现出红色,粉红色,橙黄和浅黄色发光颜色,显示出抗假冒和荧光标记领域的显着潜在应用。简而言之,根据我们的研究,激光烧结方法已被证明是在磷光体制剂领域具有很大的潜在应用。

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