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- The XPS analysis indicates that CeAlO3, formed at high temperature between CeO2 and Al2O3, is observed at the outer surface, that is to say CeO2 nanoparticles are likely adsorbed onto the inner surface of template homogeneously. 通过XPS表征发现CeO_2纳米管的表面上存在CeAlO_3,它是CeO_2与Al_2O_3高温固相反应的产物,这保证了CeO_2纳米颗粒在孔道内壁上按管状物进行均匀吸附。
- CeO2 nanoparticle 纳米CeO2
- Preparation of silicon oxide nanoparticle. 纳米二氧化硅粉体的制备。
- AUC of nanoparticle was 25.8 times of injection. AUC是注射剂的25 .;8倍。 而PEG化壳聚糖修饰的
- A new type of CO gas sensor of SnO2 doped CeO2 has been made. 研制了一种新的SnO_2掺CeO_2的CO气敏元件;
- Corrosion resistance of CeO2 film was evaluated by salt spray tesT. 通过盐雾试验评价了CeO2薄膜的耐蚀效果。
- The effect of CeO2 on the properties of Ni/WC cladding layer[J]. 引用该论文 杜利平;梁二军;陈长青;雒江涛.
- USES: As raw material in producing Ceo2 and other compounds. 用途:生产氢化铈及其它铈化合物的原料。
- CeO2 nanoparticles 纳米CeO2
- The entrapping of ADM in ADM-loaded nanoparticle(ADMNP)is 0.78mg/ml. 纳米粒阿霉素的载药量为0.;78mg/ml;
- Nanocrystalline CeO2 was prepared by hydrothermal crystallization method. 用水热晶化法制备了CeO2纳米晶。
- Gold nanoparticle(GNP) probes have aroused more and more interest recently. 金纳米颗粒(GNP)探针正引起科学家们越来越多的兴趣。
- Solid lipid nanoparticle is a new drug delivery system of nano-range. 固体脂质纳米粒是一种新型的纳米给药系统。
- Objective To investigate the toxicology and biodynamics of silica nanoparticle. 目的:研究硅颗粒制成纳米颗粒后的长期毒性及生殖毒性。
- Nanoparticle technology is widely used in the production of cosmetics industry. 纳米粒子技术被广泛应用于化妆品生产业。
- A foam ceramics of Al2TiO5?TiO2?SiO2 doped with CeO2 and Er2O3 was prepared by organic foam soaking. 用有机先驱体浸渍法制备了CeO2和Er2O3等稀土掺杂的Al2TiO5?TiO2?SiO2多相泡沫陶瓷。
- CeO2 can decrease the curie temperature and widen the @r-T peak for BTZ ceramics. CeO2有降低居里温度及展宽介电常数-温度峰的作用,并且能使材料介电常数温度系数减小。
- CeO2 powders in different ways were compared from shape of particles and preparation technics. 以硝酸铈和柠檬酸为原料,采用溶胶-凝胶法制备了CeO_2纳米晶。
- A mechanism was given in this paper, by which CeO2 improvs the reduction process of ( Fe, Or) 3O4. 提出了CeO_2促进还原的机理。
- The CdS nanoparticle obtained is cubic crystal structure with average size of 15~25 nm. 结果表明,低温固相法得到的纳米硫化镉为立方晶系结构,微粒平均粒径为15~25 nm。