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Synthesis of Y2O3 nano-powders by precipitation method using various precipitants and preparation of high stability dispersion for backlight unit (BLU)

机译:各种沉淀剂沉淀法合成Y2O3纳米粉体及制备高稳定性色散的背光单元(BLU)

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摘要

Nano-sized yttria powder was successfully synthesized by precipitation method. Three different precipitants such as NH4OH, mixture of NH4OH and NH4HCO3, and NH4HCO3 were used. It was observed that the size of yttria powder is significantly affected by type of precipitant depending on the rate of formation of precipitate. It is seen that NaHCO3 shows the most significant pH decrease during the formation of Y2CO3, thus leading to the formation of large crystal. The result also shows that the crystal size depends on calcinations temperature and the agglomeration have become more significant beyond 800 °C where the morphology have changed from flake to spherical shape interconnected each other. It was observed that the dispersity of yttria powder can be affected by bead size of ball mill, rpm and dispersion time where the physical, agglomeration has become more significant beyond 4h of dispersion. Finally, the nano-sized vttria powder of on the average 114 nm shows excellent uniform coating, sufficient transmittance and excellent brightness for lamp.
机译:通过沉淀法成功合成了纳米氧化钇粉。使用了三种不同的沉淀剂,例如NH4OH,NH4OH和NH4HCO3的混合物以及NH4HCO3。观察到氧化钇粉末的大小受沉淀剂类型的影响很大,这取决于沉淀物的形成速率。可以看出,NaHCO3在Y2CO3的形成过程中显示出最显着的pH下降,从而导致大晶体的形成。该结果还表明,晶体尺寸取决于煅烧温度,并且在800℃以上时,团聚变得更加显着,在800℃,其形态已从薄片状变为相互连接的球形。观察到,氧化钇粉末的分散性会受到球磨机的珠粒大小,rpm和分散时间的影响,在分散时间超过4h时,物理团聚变得更加明显。最后,平均为114nm的纳米级氧化钒粉末显示出优异的均匀涂层,足够的透射率和优异的灯亮度。

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