期刊文献+

高能球磨对多壁纳米碳管结构及场发射性能的影响 被引量:3

Effects of High-energy Ball Milling on Morphology and Field Emission Property of Multi-walled Carbon Nanotubes
下载PDF
导出
摘要 用振动磨进行了铁粉和多壁纳米碳管的混合物共同粉磨的试验研究,用XRD、Raman光谱和HRSEM对球磨不同时间的纳米碳管的形貌、结构及场发射性能进行了测定。结果表明,球磨8h后,部分纳米碳管的封闭端被打开,且被打开的封闭端的数量随球磨时间的增长而增多。场发射测定结果证明,铁微粒的存在可大大改善纳米碳管的场发射性能。 The effects of grinding time in a vibration mill on the morphology and the field emission property of multi-walled carbon nanotubes (MWNTs) are studied using XRD, Raman spectra, and HRSEM. The results show that the closed ends of MWNTs are partly broken when ground for four hours. The number of broken ends increases with grinding time. The field emission measurement results indicate that the presence of Fe particles can improve the property of ground MWNTs.
出处 《中国粉体技术》 CAS 2004年第6期17-19,共3页 China Powder Science and Technology
基金 山东省优秀中青年科学家科研奖励基金 编号:02BS049。
关键词 高能球磨 纳米碳管 结构 场发射 high-energy ball milling carbon nanotubes structure field emission
  • 相关文献

参考文献5

  • 1Li Y B, Wei B Q, Liang J, et al. Transformation of carbon nanotubes to nanoparticles by ball milling process [J]. Carbon, 1999, 37: 493-497.
  • 2Gao B, Bower C, Lorentzen J D, et al. Enhance saturation lithium com position in ball-milled single-walled carbon nanotubes [J]. Chemical Physies Letters, 2000, 327: 69-75.
  • 3Kim Y A, Fukai T, Endo M, et al. Effect of ball milling on morphology of cup-stacked carbon nanotubes [J]. Chemical Physics Letters, 2002.355: 279-284.
  • 4Hayao Imamura, Shinya Tabata, Noriko Shigetomi, et al. Composites for hydrogen storage by mechanical grinding of graphite carbon and magnesium [J]. Journal of Alloys and Compounds, 2002, 330-332:579-583.
  • 5Bouaricha S, Dodelet J P, Guay D, et al. Effect of carbon-containing compounds on the hydriding behavior of nano crystalline Mg2Ni[J].Journal of Alloys and Compounds, 2000, 307: 226-233.

同被引文献26

  • 1杨于兴.X射线衍射分析[M].上海:上海交通大学出版社,1988.95-104.
  • 2Kitsunai Y,Kurishita H,Kayano H,et al.Microstructure and impact properties of ultra-fine grained tungsten alloys dispersed with TiC.J Nucl Mater,1999,271/272:423-428.
  • 3Kurishita H,Amano Y,Kobayashi S,et al.Development of ultra-fine grained W-TiC and their mechanical properties for fusion applications.J Nucl Mater,2007,367-370:1453-1457.
  • 4Boiko J,Schatt W,Aldinger F,et al.Densification mechanisms during the initial stage of solid-phase sintering.Powder Metallurgy World Congress(PM94),2:1497-1500.
  • 5Hristopulos D T,Leonidakis L,Tsetsekou A.A discrete nonlinear mass transfer equation with applications in solid-state sintering of ceramic materials.2005[2011-07-10].http://arxiv.org/PS-cache/cond-mat/pdf/0510/0510244v1.
  • 6Kim Y,Hong H M,Lee S H,et al.The effect of yttrium oxide on the sintering behavior and hardness of tungsten.Met Mater Int,2006,12(3):245-248.
  • 7Kim Y,Lee K H,Kim E P,et al.Fabrication of high temperature oxides dispersion strengthened tungsten composites by spark plasma sintering process.International Journal of Refractory Metals&Hard Materials,2009,27(5):842-846.
  • 8Tokunaga K,Miura E,Yoshida Y N,et a1.High heat load properties of TiC dispersed Mo alloys.Journal of Nuclear Materials,1997,241-243:1197-1202.
  • 9Luo J.Liquid-like interface complexion:From activated sintering to grain boundary diagrams.Current Opinion in Solid State and Materials Science,2008,12(5/6):81-88.
  • 10Vivek K,Gupta A,Yoon D H,et al.Thin intergranular films and solid-state activated sintering in nickel-doped tungsten.Acta Materialia,2007,55(9):3131-3142.

引证文献3

二级引证文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部