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- CoFe2O4 nanoparticle 纳米CoFe2O4
- 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
- CoFe2O4 nanoparticles 纳米CoFe2O4
- 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;
- 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。
- 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。
- Objective To study the effect of azone on podophyllotoxin solid lipid nanoparticle in vitro. 目的考察氮酮对鬼臼毒素固体脂质纳米粒透皮性的影响。
- Conclusion: ACRB-A can be significantly concentrated in liver after prepared in nanoparticle. 提示阿柔比星A制成毫微粒后可显著提高肝脏靶向性。
- Environmental catalytic material of iron nitride nanoparticle was synthesized by Benzene-thermal method. 采用苯热法合成环境催化材料纳米氮化铁。
- Objective To review the development of genic therapy with the nanoparticle as carrier. 目的综述以纳米颗粒作为基因载体进行基因治疗的发展概况。
- When it does not, the fluorescently tagged probe adsorbs on a gold nanoparticle and its fluorescence is quenched. 当没有匹配时,这荧光标记探针附着在金属微粒区然后荧光消除。
- The congregation mechanism,dispersion mechanism and dispersion method of nanoparticle are introduced. 介绍了纳米粉体的团聚、分散机理及其分散方法。
- Pt nanoparticle can preserve its crystalline structure below the premelting temperature of surface. 当温度低于表面预熔温度时,纳米粒子保持良好的晶态结构。
- The six common methods for measuring nanoparticle size are TEM,XRD,SAXS,BET,the centrifugal method and DLS. 纳米颗粒测试的6种常见方法分别为透射电镜观察法、X射线衍射线宽法、X射线小角散射法、BET比表面积法、离心沉降法和动态光散射法。
- These experimental results are almost independent of the type of the nanoparticle. 实验结果显示吸附离子的能力几乎和粒子的种类无关。
- With the development of the nanotechnology study on HAP nanoparticle is more and more embedded. 随着纳米技术的发展。人们对纳米羟基磷灰石的研究也增多。