2) aligned carbon nanotube
定向碳纳米管
1.
Study on Preparation of Aligned Carbon Nanotube and Radar Absorbing Properties of Carbon Nanotube;
定向碳纳米管的制备及碳纳米管雷达波吸收性能研究
2.
Large area aligned carbon nanotube are grown on quartz substrates by chemical vapor deposition process.
以二茂铁、二甲苯、氩气分别为催化剂先驱体、碳源、载气,直径100mm的刚玉管为反应室,石英玻璃为基底,催化热解制备定向碳纳米管。
3.
The influence of shear stress,shear rate,temperature and the contents of aligned carbon nanotubes on melt apparent viscosity were discussed.
对定向碳纳米管进行酸化处理以后,采用机械共混法制备了定向碳纳米管/高密度聚乙烯复合材料,利用毛细管流变仪研究了高密度聚乙烯和定向碳纳米管/高密度聚乙烯复合材料的流变行为,讨论了剪切应力、剪切速率、温度以及定向碳纳米管的加入对体系流变行为的影响。
3) Well-aligned CNT arrays
定取向碳纳米管
4) Aligned carbon nanotubes
定向碳纳米管
1.
Aligned carbon nanotubes reinforced carbon matrix(ACNT/C)nanocomposites were fabricated by chemical vapor infiltration(CVI)technology.
以定向碳纳米管(ACNT)阵列为骨架,利用化学气相渗(CVI)工艺制备了新型的定向碳纳米管/碳(ACNT/C)纳米复合材料。
2.
With long aligned carbon nanotubes (ACNTs) array prepared by chemical vapor deposition (CVD) method as reinforcements, and middle-temperature coal-tar pitch as matrix precursor, pitch-based aligned carbon nanotube/carbon (ACNT/C) nanocomposites were fabricated with traditional high-pressure impregnation-carbonization technology.
以超长定向碳纳米管(ACNTs)阵列为骨架,中温煤焦油沥青为浸渍剂,采用浸渍-炭化工艺经过一个循环制备了密度约为1。
3.
Synthesis of aligned carbon nanotubes(ACNTs) is a key technique in the field of carbon nanotubes field emission display(CNTs-FED).
定向碳纳米管的制备方法是碳纳米管场发射显示器技术领域一项十分关键的技术。
5) Aligned carbon nanotubes
定向纳米碳管
1.
Aligned carbon nanotubes were prepared by CVD methods with Fe film as catalyst sputtered on SiO_2 substrate.
SiO2表面溅射铁膜后用CVD法制备了定向纳米碳管。
2.
Aligned carbon nanotubes (ACN) are widely studied all over the world due to its unique structure and excellent properties.
定向纳米碳管由于其独特的结构和优良性能,受到越来越多的关注。
6) carbon nanotube bundle
碳纳米管束
1.
In this model,the exciting light to the device was treated as common electromagnetic wave whose frequency is in the frequency band of visible light,about several hundreds THz,and the carbon nanotube bundle in the device was treated as a lossy dielectric body with frequency-dependent complex permittivity which could be derived from the quantum theory of carbon nanotube.
在该模型中,将光处理为频率较高的电磁波,纳米材料处理为有损介质材料,应用经典的电磁散射理论中的并矢格林函数建立了相应的散射模型,由此求得器件中碳纳米管束处的电场强度,并分析其吸收功率特性,从而对该光敏器件的设计给出一些指导性的意见。
补充资料:管状定向碳纳米管
纳米本意是一种长度单位,纳米材料是指材料的尺寸处于1~100nm范围内的金属,金属化合物,无机物或高分子的颗粒,对纳米材料的研究和开发依赖于能看清原子或分子世界的仪器,1993年12月中国科学院庞世瑾教授在硅表面搬走了原子,写下了"中国"的字样,人类按需要排布一个个原子的技术成为现实,前不久,我国科学家成功合成了3nm长的管状定向碳纳米管,长度居世界之首,这种碳纤维具有强度高,刚度(抵抗变形的能力)高,密度小,熔点高,化学稳定性好的特点.
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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