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- multiwalled carbon nanotube bundles 多壁纳米碳管束
- Abstract: High aligned carbon nanotubes thin film and carbon nanotube bundles thin film were synthesized by the method of pyrolyzing ferrocene/melamine mixtures. 采用热解二茂铁/三聚氰氨混合物方法合成了高取向碳纳米管薄膜和碳纳米管束薄膜。
- carbon nanotube bundle 碳纳米管束
- HYDROGEN ABSORPTION IN ABUNDANTLY HIGH PURITY ALIGNED CARBON NANOTUBE BUNDLES 氢气在大量高纯度定向碳纳米管束中的吸附
- Effects of ball milling on electrochemical capacitances of multiwalled carbon nanotube bundles 球磨对多壁纳米碳管束电化学容量的影响
- Nuclear Magnetic Resonance of Molecular Hydrogen Trapped in Single-Walled Carbon Nanotube Bundles 俘获于单壁碳纳米管束之氢分子之核磁共振现象
- Then a method to make the carbon nanotube disperse is found. 并找到了使其均匀分散的一种方法。
- Bimetallic Catalyst for Synthesizing Quasi-Aligned, Well-Graphitized Multiwalled Carbon Nanotube Bundles on a Large Scale by the Catalytic Chemical Vapor Deposition Method 用于化学蒸镀法大规模合成拟线性优良石墨化多壁碳纳米管束之催化作用的双金属催化剂
- In 1991, carbon nanotube (CNT) was first reported in Nature by Iijima. 1991 年,日本电镜专家 Iijima 在制取 C60的残余物中,发现一种结构独特的管状单质炭,即碳纳米管(carbon nanotube,CNT)。
- Water soluble multiwall carbon nanotube has good dispersiveness and stability. 采用柠檬酸钠还原氯金酸制备了金水溶胶,研究了影响金纳米粒子的粒径的相关因素。
- aligned carbon nanotube bundles 定向碳纳米管束
- Past carbon nanotube transistors were typically constructed atop silicon composites common in the electronics industry. 奈米碳管电晶体以往通常在电子工业常用的矽复合材料上面制作。
- To control the electron beam emitted from the carbon nanotube (CNT) cathode, four different electron chunnels are designed. 摘要为了控制碳纳米管阴极发射电子束的形状,设计了4种电子通道来控制电子束轨迹。
- Carbon nanotube (CNT) cathodes with different CNT contents were prepared by screen-printing method. 采用丝网印刷法制备了不同碳纳米管含量的冷阴极。
- This text describe the method of getting free-substrate aligned array carbon nanotube. 介绍了一种得到无基底阵列式排列碳纳米管膜的方法。
- Carbon nanotube electrodes exhibit unique pore structure and high utilization efficiency of specific surface areas. 碳纳米管电极具有独特的孔隙结构和高比表面积利用率;
- Screen printing technology has been improved to fabricate large area, carbon nanotube (CNT) field emission cathode. 摘要碳纳米管(CNT)是理想的场发射阴极材料。
- In this paper, we research overheated carbon source application for carbon nanotube growth. 摘要:本文为过热碳原料应用于奈米碳管成长之研究。
- A carbon nanotube cathode with high emission current has been fabricated with the screen printing method. 研究了利用丝网印刷法制备碳纳米管阴极,以获取很大的发射电流。
- Raman scattering technique is used to study the carbon nanotube synthesis system. 利用拉曼散射技术从多角度研究了碳纳米管合成系统。