• 一般情况下,表面可以通过种方法制备:疏水性表面构建粗糙结构或者粗糙表面修饰表面物质

    One is to create a rough structure on a hydrophobic surface, and the other is to modify a rough surface by materials with low surface free energy.

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  • 密封面材料结构陶瓷表面合金材料

    Seal the surface material: Structure pottery or exceeding two kinds alloy materials of hard surface.

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  • 介绍半导体粒子概念结构特性,主要是包括量子尺寸效应、体积效应表面效应;

    This thesis introduces the concept, structure and properties of semiconductor ultrafine particle (SUFP), including quantum-size effect, surface effect and volume effect et, al.

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  • 正是由于特殊的粗糙结构化学组成,使得该疏水表面表现出良好的防覆和防黏附行为。

    Just grounded on the peculiar rough structure and chemical composition, the resulting superhydrophobic aluminum alloy surface possesses excellent anti-icing and anti-adhesion behavior.

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  • 侧向表面晶格结构电子穿输现象作深入系统研究

    We have made systematically study on tunneling transport of electrons in lateral surface magnetic superlattices.

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  • 结果表明:所制得的表面由微-纳“多孔”结构烃基共同赋予

    Results indicate that the micro - and nano-scale porous structure together with the grafted hydrophobic alkyl long chains endows the aluminum alloy surface with the superhydrophobic property.

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  • 采用水热腐蚀技术制备的铁钝化多孔表面具有可调结构

    Tunable superstructures were obtained in hydrothermally etched iron-passivated porous silicon (IPS).

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  • 通过正交实验得出最佳反应条件,制得细氧化锌粉料经组分分析结构分析表明,其粒径纯度表面和晶型符合相关标准。

    The powders were tested by chemical composition analysis and construction analysis. The size of the powder, the purity and the specific area were all better than those of standard.

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  • 本文表面构造对表面亲、水性最新研究成果进行概括,表面化学成分化学结构聚集态是获得疏水膜的基础,表面的形貌和微构造是维持疏水性质的保障

    This paper gives a review of the recent progresses on the topography of extra hydrophobic surface. Both the chemical content and the morphology play an important role in super hydrophobic.

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  • 我们发现垂直方向由羧酸取代刚性分子能够溶液中和表面形成分子聚合物及其更高级的纳米线状结构

    We found that the rigid 3D hexaacid can form one-dimensional supramolecular polymer, either on surface or in solution phase.

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  • 我们发现垂直方向由羧酸取代刚性分子能够溶液中和表面形成分子聚合物及其更高级的纳米线状结构

    We found that the rigid 3D hexaacid can form one-dimensional supramolecular polymer, either on surface or in solution phase.

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