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1)  co-precipitation in solutioin
液相共沉淀
1.
The process of co-precipitation in solutioin of super thin tin indium oxide (ITO) powder was introduced.
介绍了液相共沉淀法制备氧化锢超细锡粉体材料的工艺,分析了沉淀剂、反应物的浓度、煅烧的温度和时间、分散剂等四个因素对制备过程及产物的影响。
2)  liquid-phase coprecipitation
液相共沉淀法
1.
Preparation of Fe_3O_4 nanoparticle by liquid-phase coprecipitation;
液相共沉淀法制备四氧化三铁纳米粉
2.
This Fe_3O_4 nanoparticle were prepared by liquid-phase coprecipitation, In order to gain the best parameters for preparing nanoparticle, the influences of different factors on average diameter of Fe_3O_4 nanoparticle were evaluated by orthogonal-designing method.
利用正交设计的数学方法进行实验设计,采用液相共沉淀法制备纳米级Fe3O4颗粒,考察不同影响因素对微球平均粒径大小的影响,寻找制备纳米颗粒的最佳条件。
3.
It is introduced that the preparation of Fe_3O_4 nanoparticle with liquid-phase coprecipitation.
采用液相共沉淀法制备出纳米级Fe3O4颗粒,并根据BP神经网络理论,建立了相应模型,采用正交设计实验的结果进行模型的训练,用训练后的模型对预测样本进行了预测与优选。
3)  precipitation method
液相共沉淀法
1.
La_2O_3/Al_2O_3/TiO_2 nano composite powder is prepared by precipitation method from TiCl_4,La_2O_3 and Al.
以TiCl_4、La_2O_3、Al片为原料,采用液相共沉淀法制备了La_2O_3/Al_2O_3/TiO_2纳米复合粉体,采用DSC-TG、XRD、TEM技术对该纳米复合粉体进行了表征。
2.
ZnO/TiO 2 Nanometer powders is prepared by a precipitation method from TiCl 4、ZnCl 2.
以TiCl4、ZnCl2 为原料 ,采用液相共沉淀法制备了ZnO/TiO2 纳米复合粉体 ,并用DSC TG、XRD、TEM技术对纳米复合粉体进行了表征。
4)  liquid-state co-precipitation method
液相共沉淀法
1.
Preparation of BaPbO_3 conductive ceramic powder by liquid-state co-precipitation method;
液相共沉淀法制备BaPbO_3导电陶瓷粉末
2.
BaPbO 3conductive ceramics powder was prepared by means of liquid-state co-precipitation method (LSCM) with BaCO 3 and PbO as the raw powders.
利用液相共沉淀法 ,以BaCO3和PbO为原料制备了BaPbO3陶瓷粉末。
3.
BaPbO3 conductive ceramics powder with doping La was prepared by using a liquid-state co-precipitation method (LSPM).
采用化学液相共沉淀法制备了掺稀土La的BaPbO_3导电陶瓷;用XRD及SEM对粉末的结构和组织进行了研究,从而确定了液相共沉淀法制取Ba_(1-x)La_xPbO_3的合成温度;同时讨论了稀土La对BaPbO_3粉末合成过程及其电性能的影响。
5)  chemical liquid phase coprecipitation
化学液相共沉淀
6)  liquid chemical co-precipitation
液相化学共沉淀
补充资料:共晶共沉淀
分子式:
CAS号:

性质:共沉淀法之一,指无法结晶的微量物质与常量物质产生共结晶沉淀而被载带出来。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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