期刊文献+

Magnetron sputtering synthesis of large area well-ordered boron nanowire arrays

Magnetron sputtering synthesis of large area well-ordered boron nanowire arrays
原文传递
导出
摘要 One-dimensionally nanostructured materials, such as nanowires and nanotubes, are the smallest dimensional structures for efficient transport of electrons and excitons, and are therefore critical building blocks for nanoscale electronic and mechanical devices. In this paper, boron nanowires with uniform diameters from 20 to 80 nm were synthesized by radio-frequency magnetron sputtering of pure boron powder and B2O3 powder mixtures in argon atmosphere. The boron nanowires produced stand vertically on the substrate surface to form well-ordered arrays over large areas with self- organized arrangements without involvement of any template and patterned catalyst. The high-density boron nanowires are parallel to each other and well distributed, forming highly ordered and uniform arrays. A more interesting and unique feature of the boron nanowires is that most of their tips are flat rather than hemispherical in morphologies. Detailed studies on its structure and composition indicate that boron nanowires are amorphous. Boron nanowire appears as a new member in the family of one-dimensional nanostructures. Considering the unique properties of boron-rich solids and other nanostructures, it is reasonable to expect that the boron nanowires will display some exceptional and interesting properties. A vapor-cluster-solid (VCS) mechanism was proposed to explain the growth of boron nanowires based on our experimental observations. One-dimensionally nanostructured materials, such as nanowires and nanotubes, are the smallest dimensional structures for efficient transport of electrons and excitons, and are therefore critical building blocks for nanoscale electronic and mechanical devices. In this paper, boron nanowires with uniform diameters from 20 to 80 nm were synthesized by radio-frequency magnetron sputtering of pure boron powder and B2O3 powder mixtures in argon atmosphere. The boron nanowires produced stand vertically on the substrate surface to form well-ordered arrays over large areas with self-organized arrangements without involvement of any template and patterned catalyst. The high-density boron nanowires are parallel to each other and well distributed, forming highly ordered and uniform arrays. A more interesting and unique feature of the boron nanowires is that most of their tips are flat rather than hemispherical in morphologies. Detailed studies on its structure and composition indicate that boron nanowires are amorphous. Boron nanowire appears as a new member in the family of one-dimensional nanostructures. Considering the unique properties of boron-rich solids and other nanostructures, it is reasonable to expect that the boron nanowires will display some exceptional and interesting properties. A vapor-cluster-solid (VCS) mechanism was proposed to explain the growth of boron nanowires based on our experimental observations.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2004年第4期403-415,共13页 中国科学:物理学、力学、天文学(英文版)
基金 partly supported by the National Natural Science Foundation of China(Grant No.10374078).
关键词 BORON nanowires MAGNETRON sputtering arrays self-assembly. boron nanowires magnetron sputtering arrays self-assembly
  • 相关文献

参考文献10

  • 1Fan S.S,Chapline M.G,Franklin N.R,et al.Self-oriented regular arrays of carbon nanotubes and their field emission properties[].Science.1999
  • 2Pan ZW,Dai ZR,Wang ZL.Nanobelts of semiconducting oxides[].Science.2001
  • 3Dai H,Wong E W,Lu Y Z,et al.Synthesis and characterization of carbide nanorods[].Nature.1995
  • 4Whitney T M,Jiang J S,Searson P C,et al.Fabrication and magnetic properties of arrays of metallic nanowires[].Science.1993
  • 5Eremets M I,Struzhkin V V,Mao H K et al.Superconductivity in boron[].Science.2001
  • 6J. Niu,B. K. Rao,P. Jena.Atomic and electronic structures of neutral and charged boron and boron-rich clusters[].The Journal of Chemical Physics.1997
  • 7A. Gindulyte,W. N. Lipscomb,L. Massa.Proposed boron nanotubes[].Inorganic Chemistry.1998
  • 8A. Gindulyte,N. Krishnamachari,W. N. Lipscomb.Quantum chemical calculations of proposed multicage boron fullerenes[].Inorganic Chemistry.1998
  • 9I. Boustani,A. Quandt,E. Hernandez.New boron based nanostructured materials[].The Journal of Chemical Physics.1999
  • 10Hu J T,Odom T W,Lieber C M.Chemistry and physics in one dimension: synthesis and properties of nanowires and nanotubes[].Accounts of Chemical Research.1999

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