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沉淀剂浓度对喷雾共沉淀法合成Tb2O3纳米粉体的影响

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采用喷雾共沉淀法结合还原气氛处理制备了 Tb2O3超细纳米粉体,探究了碳酸氢铵沉淀剂浓度对前驱体物相、粉体微观形貌和烧结性能的影响.研究表明,沉淀剂浓度会显著影响纳米粉体的微观形态、均匀性和烧结活性.沉淀剂浓度过低会导致沉淀物晶粒过度生长,造成粉体粒径增大和不均匀性;沉淀剂浓度过高会造成不良的软团聚.最佳沉淀剂浓度为1.5 mol/L,该条件下可获得平均粒径约为52.45 nm的超细Tb2O3均匀粉体,粒径分布范围为30~80 nm.粉体经1 400 ℃的保护气氛烧结和热等静压处理后制得的Tb2O3透明陶瓷在1 064 nm波长下Tb2O3透明陶瓷线性透过率为76.11%.
Influence of Precipitant Concentration on Tb2O3 Nanopowders Synthesized via Spray Coprecipitation Method
Ultrafine Tb2O3 nanopowders were prepared by spray co-precipitation method combined with reduction atmosphere treatment.The influence of ammonium bicarbonate precipitant concentration on precursor phase,nanopowders microstructure,and sintering performance was investigated.The results show that the concentration of the precipitant significantly affects the microstructure,uniformity and sintering activity of the nanopowder.A low concentration of precipitant can lead to excessive growth of precipitate grains,resulting in an increase in nanopowders size and unevenness,while a excessive concentration of precipitant can cause poor soft agglomeration.The optimal precipitant concentration is 1.5 mol/L,and under this condition,ultrafine Tb2O3 nanopowders with an average particle size of about 52.45 nm can be obtained,with a particle size distribution range of 30 nm to 80 nm.The Tb2O3 transparent ceramic prepared by sintering the powder in a protective atmosphere at 1 400 ℃ and hot isostatic pressing has a linear transmittance of 76.11%at 1 064 nm.

Tb2O3spray coprecipitationprecipitant concentrationnanopowdershomogeneityatmosphere sintering

唐宇翔、胥涛、王耀智、敬畏、梅炳初

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武汉理工大学材料科学与工程学院,武汉 430079

中国工程物理研究院化工材料研究所,绵阳 621900

Tb2O3 喷雾共沉淀 沉淀剂浓度 纳米粉体 均匀性 气氛烧结

四川省创新人才基金

2023JDRC0015

2024

硅酸盐通报
中国硅酸盐学会 中材人工晶体研究院

硅酸盐通报

CSTPCD北大核心
影响因子:0.698
ISSN:1001-1625
年,卷(期):2024.43(4)
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