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1)  nano structure fabrication
纳米结构制备
2)  nanostructure
纳米结构制作
1.
The fabrication of nanostructures, an important part of nanotechnology, is based upon nanolithography which will be widely employed in the future.
纳米技术是 2 1世纪信息科学的一项关键技术 ,纳米结构制作是纳米技术的重要组成部分 。
3)  nanostructure
纳米结构
1.
Preparation and Characterization of Large-area Superhydrophobic Nanostructured Carbon Films;
大面积超疏水性纳米结构碳膜的制备与表征
2.
Synthesis and characterization of hydroxyapatite nanoparticles for medicine utilization: nanostructure and nanosize effect of hydroxyapatite nanomaterials;
医用羟基磷灰石纳米粒的制备和特性:羟基磷灰石纳米粒的纳米结构及纳米尺寸效应(英文)
3.
Study of nanostructure and uniformity of fluorocarbon films prepared on PET substrates;
PET基底上碳氟膜纳米结构及均匀性研究
4)  nano-structure
纳米结构
1.
Photocatalytic performance of hydrolyzated zinc nano-structures to decompose methyl orange;
水解锌纳米结构对甲基橙的光催化降解
2.
Preparation of Wood-Silica Aerogels Composites by Supercritical Drying Technique and Its Nano-structure;
超临界干燥制备木材-SiO_2气凝胶复合材料及其纳米结构
3.
Synthesis and analysis on Sb_2Te_3 nano-structure;
纳米结构Sb_2Te_3的合成与分析
5)  nanostructures
纳米结构
1.
Development of the combination of SPM nanolithography and molecular self-assembly method:Fabrication of planned functional nanostructures on solid substrate;
扫描探针加工和自组装技术相结合的研究进展——表面图形可控的功能纳米结构的制备
2.
Fabricating artificial nanostructures with a scanning tunneling microscope;
利用扫描隧道显微镜构建纳米结构
3.
Hydrothermal Synthesis and Characterization of Flower-like Lanthanum Stannate Nanostructures;
锡酸镧(La_2Sn_2O_7)花状纳米结构的水热合成及表征
6)  nanometer structure
纳米结构
1.
New Measuring Method for Material Parameters of Nanometer Structure Devices;
纳米结构器件材料结构参数的新测试方法
2.
And as for the AFM imaging of starch structure, more specifically, the pretreatment of the samples, the observation of molecular chains, and the nanometer structures of the surface and inner surface of starch are illustrated.
详述了原子力显微镜(AFM)工作的基本原理,测定淀粉纳米结构中样品的处理方法,以及AFM在观察淀粉溶液的分子链结构、淀粉颗粒表面的纳米结构、淀粉颗粒内部的纳米结构中的应用,对AFM在淀粉纳米结构分析的前景进行了展望。
3.
The development survey and research state of relaxor ferroelectrics are reviewed, the importance of nanometer structure to macroscopic properties is discussed, and research outlook and development trends in this field are indicated.
评述了弛豫型铁电体的发展概况及研完现状,讨论了其纳米结构特征对宏观性能的重要作用,并对研究前景和发展方向作了展望。
补充资料:惰性气体蒸发原位加压制备纳米固体装置


惰性气体蒸发原位加压制备纳米固体装置


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