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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Preparation of nano-sized lutetium aluminum garnet powders using ammonia hydrogen carbonate as precipitant
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Preparation of nano-sized lutetium aluminum garnet powders using ammonia hydrogen carbonate as precipitant

机译:以碳酸氢氨为沉淀剂制备纳米级aluminum铝石榴石粉

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摘要

Nano-sized lutetium aluminum garnet (LU3AI5O12, LuAG) powder was co-precipitated from a mixed solution of aluminum and lutetium nitrates using ammonia hydrogen carbonate (AHC) as precipitant. The component, phase evolution and thermal decomposition of the precursor during calcination were studied by FTIR, XRD and TG-DSC. The particle size and morphology of the synthesized powders were determined by TEM. It was found that the precursor was amorphous carbonate and transformed to pure LuAG phase after being calcined at 900°C for 2 h. LuAG crystallite grew with increasing calcined temperature. The crystallization stage was characterized by an exothermic peak of DSC curve at 1064°C. This temperature was higher than that detected by XRD, which was caused by the difference in soaking time and the hysteresis of the TG-DSC analyzer. The. resultant LuAG powders were loosely agglomerated with an average particle size 50nm. However, the addition of small amount of hydroxypropyl cellulose (HPC) as dispersant can reduce the agglomeration and particle size of the produced LuAG powders. The size of LuAG powder is about 30nm in the presence of UPC.
机译:使用碳酸氢氨(AHC)作为沉淀剂,从铝和硝酸的混合溶液中共沉淀出纳米级aluminum铝石榴石(LU3Al5O12,LuAG)粉。通过FTIR,XRD和TG-DSC研究了煅烧过程中前驱体的成分,相演化和热分解。通过TEM确定合成粉末的粒径和形态。发现该前体为无定形碳酸盐,并在900°C煅烧2 h后转变为纯LuAG相。 LuAG晶体随着煅烧温度的升高而生长。结晶阶段的特征在于在1064℃下DSC曲线的放热峰。该温度高于XRD检测到的温度,这是由于TG-DSC分析仪的浸泡时间和滞后的差异所致。的。将所得的LuAG粉末疏松团聚,平均粒径为50nm。然而,添加少量的羟丙基纤维素(HPC)作为分散剂可以减少所生产的LuAG粉末的团聚和粒径。在UPC存在下,LuAG粉末的尺寸约为30nm。

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