A fluorophore was attached to the inner surfaces of the nano test tubes.
阿荧光重视内表面纳米试管。
AIM: to develop nano test tubes that will deliver a biomedical payload to a specific cell type.
目的:建立纳米试管,将提供一个生物医学的有效载荷为特定的细胞类型。
A new type nano test system is introduced, the test principle and the indentation data analysis method are described.
介绍一种新型的多功能纳米材料性能测试仪,阐述仪器工作原理和压痕数据分析法。
CONCLUSIONS: This work is a first step toward demonstrating that nano test tubes can be used as cell-specific delivery vehicles.
结论:这项工作的第一步,表明纳米试管可作为细胞特异性运载工具。
Nano-titanium dioxide, which is used as a whitening agent in many food and cosmetic products, has been proven to cause disease in test animals that have been exposed to high doses.
纳米二氧化钛被用作许多食品和化妆品的增白剂,试验已经证明当试验动物暴露在高浓度此种物质的情况下会产生疾病。
Nano-scale composite ceramic coating on Q235 was fabricated by thermochemical reaction method, and then structural analysis and performance test were conducted of the coating.
采用热化学反应法在Q235钢上制备纳米复合陶瓷涂层,对涂层进行结构分析及性能测试。
In the Young's modulus measuring test, an experimental method of measuring the thickness of the nano beam with nano gaps is put forward, and the implementation details are given.
在硅纳米梁的杨氏模量测试实验中,本文针对硅纳米梁与基底间纳米量级间隙的特点,提出了一种测量纳米梁厚度的实验方法,并给出了具体操作和数据处理流程。
Fatigue test was carried out for commercial pure titanium that have nano-crystallized in surface by high-energy shot peening.
采用高能喷丸方法使工业纯钛疲劳试样的表层实现纳米化,并进行了疲劳试验。
The test results showed that the scorch time of rubber compound ex tended by adding nano-zinc oxide, and the tensile strenght, abrasion resistance a nd aging property of its vulcanizate improved;
试验结果表明,纳米氧化锌可延长胶料的焦烧时间,提高硫化胶的拉伸性能和耐磨性能,硫化胶的耐老化性能也较好;
The Young's modulus of silicon nano-beam on <100> direction was measured by bending test method using an atomic force microscope(AFM).
阐述了基于原子力显微镜(AFM)的弯曲测试测量纳米梁杨氏模量的理论和方法。
For immersion tests and the polarization curve of the experimental test, nano-composite coating can increase the magnesium alloy corrosion resistance.
对纳米复合镀层进行浸泡试验和极化曲线的测定,表明纳米复合镀层能很好地提高镁合金的耐腐蚀性能。
The make-break test shows that AgC 5 contact material fabricated by nano-phase coating possesses good resistance against arc erosion.
分断实验表明 :将纳米技术应用到银 /石墨触头材料的制备中 ,使材料的抗电弧磨损性能有了较大的改善。
The make-break test shows that AgC 5 contact material fabricated by nano-phase coating possesses good resistance against arc erosion.
分断实验表明 :将纳米技术应用到银 /石墨触头材料的制备中 ,使材料的抗电弧磨损性能有了较大的改善。
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