It has wide range of applications in nano-optoelectronic devices, superconductors, electrical and mechanical brakes, electrochemical capacitors, nanowires and nano-composite materials.

  • 在纳米光电器件,超导体,机电制动器,电化学电容器,纳米线,纳米复合材料等方面应用很广泛。
  • 来源:互联网摘选更新时间:2026-07-13 04:55:46

  • 重点词汇
  • ofprep. 关于;属于…的;由…制成;
  • electricaladj.用电的;供电的;电能的;
  • applicationsn.(尤指理论、发现等的)应用,运用;申请;请求;申请表;申请书;施用;动用;涂抹;敷用;施用;
  • brakesn.制动器( brake的名词复数 );闸;刹车;阻力;
  • nanowires纳米线(nanowire 的复数);
  • andconj. 和;与;而且;于是;然后
  • itpron.它;他;正好是所需的;事实[情况];
  • electrochemicaladj.电气化学的;电化;
  • 相关例句
1、

As the iron and steel materials, ceramic materials, semiconductor materials and nano-composite materials and new materials and the deepening of the development of materials is increasing the role of interface.

随着对钢铁材料、陶瓷材料、半导体材料及纳米级新材料和复合材料的不断深入发展,材料界面的作用日趋增加。

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2、

Objective: To contrast, analyze and research three kinds of usually-used composite resin teeth and Nano-composite materials, on structure, element and the mechanic properties.

目的:目前临床上常用的普通树脂牙和纳米树脂牙的组成成分、内部结构及力学性能的对比分析研究。

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3、

In recent years, nano-composite materials have been investigated widely by researchers because of their extensive applications in optical, electrical, magnetic, and biological sensors.

近年来,复合材料,尤其是纳米复合材料,由于其在光学、电学、磁学及生物传感器等领域的广泛应用,越来越受到研究者的关注。

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4、

Preparation of Polymer/ Montmorillonite Nano-composite Materials by Photo-Polymerization and Hot-Polymerization

光聚合和热聚合蒙脱土插层纳米复合材料的制备

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5、

Preparation of a Nano-composite Materials Consisting of Palygorskite-TiO_2-magnetic Particles

凹凸棒石-TiO2-磁性颗粒纳米复合材料的制备

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6、

Morphology and Mechanical Properties of Styrene-Butadiene-Rubber/ Fumed Silica Nano-Composite Materials

丁苯胶/气相法白炭黑纳米复合材料的微观形态与力学性能

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7、

Compared with already industrialized cemented carbide cutting tool materials, alumina-based nano-composite materials has high wear resistance.

相比已经工业化的硬质合金刀具材料来说,氧化铝基纳米复合刀具材料具备很高的耐磨性。

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8、

A study on the preparation of polymer/ montmorillonite nano-composite materials by photo-polymerization

光诱导聚合蒙脱土插层纳米复合材料的研究

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9、

To satisfy all kinds of application, preparation of multifunctional nano-composite materials has become an important aspect of research.

为满足各种需求,制备具有多功能的纳米复合材料已经成为材料研究的一个热点。

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10、

As a new type of molecules in the surfactants, nano-composite materials have shown good application prospects.

作为一种新型分子,在表面活性剂、纳米复合材料等方面已展现出较好的应用前景。

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11、

Research on Organic-Inorganic Micro/ Nano-Composite Materials Employing hydrogel Template Method

基于水凝胶模板法制备有机-无机复合微纳米材料的研究

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12、

Numerical Simulation of Equivalent Elastic Modulus for Metal Matrix Nano-composite Materials Using Homogenization Method

金属基纳米复合材料等效弹性模量的均匀化方法数值模拟

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13、

Structure and Properties of EVA/ Al_2O_3 Nano-composite Materials

EVA/Al2O3纳米复合材料的结构与性能

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14、

The characteristics of nano-composite materials were simply introduced.

简要介绍了纳米复合材料的特点。

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16、

Graphene has excellent mechanical properties, electrical properties and large specific surface area and remarkable adsorption properties and other characteristics, and has a wide range of applications in polymer nanocomposites.

石墨烯具有优良的力学性能、导电性能以及大的比表面积和优异的吸附性能等特性,在聚合物纳米复合材料材料领域有着广泛的应用价值。

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17、

Molecular assembly technologies of inorganic nanoparticles and organic polymers, and associated nanoscience for the synthesis of revolutionary polymer nanocomposites have aroused increasing interest among scientists.

无机纳米粒子与有机聚合物的分子组装技术以及在制备新型纳米复合材料中相关的纳米技术越来越受到现代科学家的关注。

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18、

Such a one-step in situ polymerization and thermal reduction method shows significant potential for the mass production of electrically conductive graphene oxide/ polymer nanocomposites.

这种一步法原位聚合和热还原氧化石墨烯的方法对大量生产导电的聚合物基纳米复合材料具有深远的意义。

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19、

Polymer nanocomposites are promising as near-future dielectrics and electrical insulation from the viewpoint of their inherent excellent properties.

聚合物基纳米复合材料作为电介质和电气绝缘材料在电力电子技术领域有着广泛的应用前景。

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20、

The homogeneous dispersion of nano-particles and processing of high-performance polymer nanocomposites still is a technical challenge due to the high active surface of nanoparticles.

纳米材料的高表面活性使其易于团聚,这为其分散和高性能纳米复合材料的制备工艺带来挑战。

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