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- CoFe2O4 nanoparticles 纳米CoFe2O4
- Do Nanoparticles in Food Pose a Health Risk? 食用含纳米颗粒食品会损害健康吗?
- CoFe2O4 nanoparticle 纳米CoFe2O4
- The final crystals have approximately 1 million nanoparticles. 最终的晶体中有大约1百万个纳米粒子。
- Nanoparticles exhibit similar dimensions to those of biomolecules. 摘要纳米粒子具有独特的光、电和催化性质;
- SEM/EDX indirectly showed the nanoparticles dispersed well in the scaffold. SEM/EDX结果间接表征了纳米微球在支架中分布均匀。
- AuCl~-_(4)reacts with I~(-)to form(AuI)_n nanoparticles in size of 12 nm. AuC l4-与I-可形成(AuI)n纳米微粒.
- TiO2 nanoparticles have great value in the market and bright prospect. 纳米TiO2具有极大的市场价值和光明的发展前景。
- The semiconductor CdSe nanoparticles exhibit the quantum confined fluorescence. 硒化镉半导体颗粒具有量子局限效应产生的萤光。
- OBJECTIVE To study the preparation of magnetic dextran-mitomycin nanoparticles. 目的对葡聚糖丝裂霉素磁性纳米粒的制备及其含量进行研究。
- By replaced part of Cd with Gd, Gd dopped CdS nanoparticles were synthesized. 将钆离子掺杂进硫化镉奈米粒子中,原为逆磁性的硫化镉奈米粒子展现顺磁性质。
- The challenge of preparing nanoparticles by inverse microemulsion was given. 最后指出了当前反胶团微乳液制备纳米颗粒所面临的挑战。
- Nanodroplets of the microemulsion bind with nanoparticles of the nutraceutical or cosmetoceutical. 该微小乳状液中的纳米液滴与营养食品或药用美容品的纳米颗粒结合。
- Therefore able to capture at the same time observe the nanoparticles into optical tweezers technology in-depth study nanoparticles bottlenecks. 因此能够捕获的同时观察纳米粒子成了光镊技术深入研究纳米粒子的瓶颈。
- In the present work, silicate and CUSO4 were used as main materials to prepare Cu2+-loaded layer silicate nanoparticles (CSN) by nano-technology. 本课题以硅酸盐和硫酸铜为主要原料,应用纳米科技,构建出载铜硅酸盐纳米微粒(CSN)。
- The amino group functionalized CdS nanoparticles have been synthesized by a one-step process. 摘要我们已成功合成外围修饰胺基的硫化镉奈米微粒。
- Using 3.5 G PAMAM as a stabilizing agent,Au nanoparticles were prepared by reducing HAuCl4 with microwave irradiation. 以3.;5 G PAMAM(3
- The pharmacokinetics and targeting effect of mitomycin C magnetic nanoparticles(1-MNP) in rats were evaluated. 评价了丝裂霉素C磁性纳米粒(1-MNP)在大鼠体内的药动学和靶向性。
- Recent investigation shows that CeC>2 nanoparticles can be used as CMP slurry to polish IC chip. 最新研究表明,纳米CeO_2可用于集成电路芯片加工的化学机械抛光(CMP)浆料。
- CdSe nanoparticles obtained have a ca. 150 nm broad, continuous excitation peak and a narrow, symmetric emission peak. 合成的硒化镉纳米颗粒有150 nm 宽的激发波长范围,荧光峰窄且具有良好对称性。