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A Study of Optical Properties of a Glass Composition of a ZnO-Bi2O3-P2O5 Glass/Phosphor Composite for a White LED

机译:用于白光LED的ZnO-Bi2O3-P2O5玻璃/荧光粉复合材料的玻璃组合物的光学性质的研究

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For implement the white light-emitting diode (LED) package, glass-phosphor composite was produced with different glass composition and glass/phosphor ratio. To maximize the LED light emission characteristic, the glass frit was required a low firing temperature and high refractive index. We selected the bismuth phosphate glass due to their low melting and high refractive index. With further addition of Bi2O3, the value of Tg,Ts was decrease and coefficient of thermal expansion, refractive index were increased, due to the Bi2O3 acts as modifier in the glass increasing the non-bridging oxygens. The refractive index changes of the glass frit affect the optical property of the composite. With higher contents of Bi2O3 glass composition, the transmittance and emission intensity of the composite was increased. These results suggest that the difference in refractive index between the phosphor and glass frit is minimized, the loss of light is minimized.
机译:为了实现白色发光二极管(LED)封装,制备了具有不同玻璃组成和玻璃/磷比率的玻璃-磷复合材料。为了使LED的发光特性最大化,要求玻璃粉具有低烧成温度和高折射率。我们选择低熔点和高折射率的磷酸铋玻璃。随着Bi 2 O 3的添加,由于玻璃中的Bi 2 O 3充当改性剂,增加了非桥连氧,Tg,Ts值降低,热膨胀系数,折射率增加。玻璃料的折射率变化影响复合材料的光学性能。随着Bi 2 O 3玻璃组合物含量的增加,复合材料的透射率和发射强度增加。这些结果表明,磷光体和玻璃粉之间的折射率差被最小化,光的损失被最小化。

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