Vapour transport growth of ZnO nanorods

被引:17
|
作者
Mofor, A. C.
Bakin, A. S.
Elshaer, A.
Fuhrmann, D.
Bertram, F.
Hangleiter, A.
Christen, J.
Waag, A.
机构
[1] Tech Univ Braunschweig, Inst Semicond Technol, D-38106 Braunschweig, Germany
[2] Tech Univ Braunschweig, Inst Appl Phys, D-38106 Braunschweig, Germany
[3] Univ Magdeburg, Dept Solid State Phys, D-39106 Magdeburg, Germany
来源
关键词
D O I
10.1007/s00339-007-3961-5
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The fabrication of low-dimensional ZnO structures has attracted enormous attention as such nanostructures are expected to pave the way for many interesting applications in optoelectronics, spin electronics gas sensor technology and biomedicine. Many reported fabrication methods, especially for ZnO nanorods are mostly based on catalyst-assisted growth techniques that employ metal-organic sources and other contaminating agents like graphite to grow ZnO nanorods at relatively high temperatures. We report on catalyst-free vapour-phase epitaxy growth of ZnO nanorods on 6H-SiC and (11-20)Al2O3 using purely elemental sources at relatively low temperatures and growth pressure. ZnO nanorods with widths of 80-900 nm and lengths of up to 12 mu m were obtained. Nanorod density on the order of 10(9) cm(-2) with homogenous luminescence and high purity was also noted.
引用
收藏
页码:17 / 20
页数:4
相关论文
共 50 条
  • [21] The study on the growth process of ZnO nanorods
    Qi, XQ
    Tao, DL
    Huang, Y
    Ling, C
    Xu, YZ
    Wei, F
    Wu, JG
    Xu, DF
    SPECTROSCOPY AND SPECTRAL ANALYSIS, 2005, 25 (03) : 321 - 325
  • [22] Growth and optical study of ZnO nanorods
    Chandrinou, C.
    Boukos, N.
    Giannakopoulos, K.
    Lusson, A.
    Travlos, A.
    SUPERLATTICES AND MICROSTRUCTURES, 2007, 42 (1-6) : 431 - 437
  • [23] Growth of Triangular ZnO Nanorods by Electrodeposition
    Chen, Xin Yi
    Fang, Fang
    Ng, Alan M. C.
    Djurisic, Aleksandra B.
    Tong, S. Y.
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2010, 157 (12) : K269 - K272
  • [24] Growth of ZnO nanorods on electrospun fibers
    Sutherlin, Logan
    Ozer, Ruya R.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2012, 243
  • [25] Dielectric behavior and transport properties of ZnO nanorods
    Samuel, M. Soosen
    Koshy, Jiji
    Chandran, Anoop
    George, K. C.
    PHYSICA B-CONDENSED MATTER, 2011, 406 (15-16) : 3023 - 3029
  • [26] Optimisation on the growth and alignment of ZnO nanorods
    Ranjith, Kugalur Shanmmugam
    Pandian, Ramanathaswamy
    Natarajan, Gomathi
    Kamruddin, Mohammed
    Rajendrakumar, Ramasamy Thangavelu
    RECENT TRENDS IN ADVANCED MATERIALS, 2012, 584 : 319 - +
  • [27] The preferential growth of ZnS on ZnO nanorods
    Kumarakuru, Haridas
    Cherns, David
    JOURNAL OF SOLID STATE CHEMISTRY, 2013, 199 : 109 - 115
  • [28] MOCVD growth mechanisms of ZnO nanorods
    Perillat-Merceroz, G.
    Jouneau, P. H.
    Feuillet, G.
    Thierry, R.
    Rosina, M.
    Ferret, P.
    16TH INTERNATIONAL CONFERENCE ON MICROSCOPY OF SEMICONDUCTING MATERIALS, 2010, 209
  • [29] Electrical transport properties of single ZnO nanorods
    Heo, YW
    Tien, LC
    Norton, DP
    Kang, BS
    Ren, F
    Gila, BP
    Pearton, SJ
    APPLIED PHYSICS LETTERS, 2004, 85 (11) : 2002 - 2004
  • [30] ZnO and ZnO:Mn crystals obtained with the chemical vapour transport method
    Mycielski, A
    Szadkowski, A
    Kowalczyk, L
    Witkowska, B
    Kaliszek, W
    Chwalisz, B
    Wysmolek, A
    Stepniewski, R
    Baranowski, JM
    Potemski, M
    Witowski, AM
    Jakiela, R
    Barcz, A
    Aleshkevych, P
    Jouanne, M
    Szuszkiewicz, W
    Suchocki, A
    Lusakowska, E
    Kaminska, E
    Dobrowolski, W
    11TH INTERNATIONAL CONFERENCE ON II-VI COMPOUNDS (II-VI 2003), PROCEEDINGS, 2004, 1 (04): : 884 - 887