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Bio-inspired design and fabrication of an ultralight and strong nano-carbon gradient composite
会议论文
20th International Conference on Composite Materials (ICCM), Copenhagen, DENMARK, 2016-10-05
作者:
Wang, Yanjie
;
Li, Min
;
Lu, Weibang
;
Gu, Yizhuo
;
Wang, Shaokai
收藏
  |  
浏览/下载:7/0
  |  
提交时间:2019/12/30
Gradient composite
Carbon nanotube film
Graphene aerogel
Mechanical property
Electrical conductivity
Liquid transportation and preservation
Controlled growth and supercapacitive behaviors of CVD carbon nanotube arrays
会议论文
11th IUMRS International Conference in Asia, IUMRS-ICA2010, Qingdao, China, September 25, 2010 - September 28, 2010
作者:
Zhao, Dandan
;
Yang, Zhi
;
Wei, Hao
;
Zhang, Yafei
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  |  
浏览/下载:4/0
  |  
提交时间:2017/01/20
Chemical vapor deposition
Amorphous carbon
Amorphous silicon
Capacitors
Carbon nanotubes
Catalysts
Electric current collectors
Electrodes
Graphene
Metallic compounds
Secondary batteries
Semiconducting silicon compounds
Silicon wafers
Sodium
Titanium compounds
Active material
Ambient gas
Carbon nanotube array
Catalyst film
Catalyst particles
Chemical vapor
Controlled growth
Current collector
Electrodeposition technique
Graphene layers
Growth conditions
Growth time
Local environments
Low cost approach
Ni foam
Scan rates
Super capacitor
Supercapacitive behavior
Transitional metal oxide
Vertically aligned CNT arrays
Intertube falling-film heat transfer behavior of multiwall carbon nanotube suspensions (MWCNT nanofluids)
会议论文
作者:
Ruan, Binglu
;
Jacobi, Anthony M.
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  |  
浏览/下载:9/0
  |  
提交时间:2019/12/10
Carbon-nanotube suspensions
Falling film
Heat transfer behavior
Heat transfer characteristics
Nanofluids
Volume concentration
Water based
Electrophoretic deposition and field emission properties of multiwall carbon nanotubes (EI CONFERENCE)
会议论文
19th International Vacuum Nanoelecronics Conference and 50th International Field Emission Symposium, IVNC and IFES 2006, July 17, 2006 - July 20, 2006, Guilin, China
Zhao H.
;
Song H.
;
Lu W.
;
Jiang H.
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浏览/下载:15/0
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提交时间:2013/03/25
Carbon nanotubes were dispersed in isopropyl alcohol solution which containing 210-5 mol/L dissolved Mg(NO3) 2·6H2O. The nanotubes were deposited on the conducting substrates as field emitters with electrophoretic deposition method. Some carbon nanotubes film specimens with different thickness were obtained by adjusting the deposition time. The field emission properties have been tested with a diode structure below 110-4 Pa. CNTs film deposition thickness around 1.4 m showed higher field emission current. During the electrophoretic deposition process
the magnesium hydroxide formatted too. The metal hydroxide existing in the carbon nanotube film and on the substrates
would affect on the field emission properties evidently. 2006 IEEE.
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