• Frontiers of Optoelectronics
  • Vol. 4, Issue 2, 188 (2011)
Zhenghua WANG* and Shiyu ZHU
Author Affiliations
  • Anhui Key Laboratory of Functional Molecular Solids, College of Chemistry and Materials Science, Anhui Normal University,Wuhu 241000, China
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    DOI: 10.1007/s12200-011-0163-8 Cite this Article
    Zhenghua WANG, Shiyu ZHU. Rapid growth of t-Se nanowires in acetone at room temperature and their photoelectrical properties[J]. Frontiers of Optoelectronics, 2011, 4(2): 188 Copy Citation Text show less
    References

    [1] Li H T, Regensburger P J. Photoinduced discharge characteristics of amorphous selenium plates. Journal of Applied Physics, 1963, 34(6): 1730-1735

    [2] Kasap S O, Rowlands J A. Review X-ray photoconductors and stabilized a-Se for direct conversion digital flat-panel X-ray imagedetectors. Journal of Materials Science Materials in Electronics, 2000, 11(3): 179-198

    [3] Greenwood N N, Eamshaw A. Chemistry of the Elements. 2nd ed. Oxford: Pergamon, 1997

    [4] Zhang H, Yang D R, Ji Y J, Ma X Y, Xu J, Que D L. Selenium nanotubes synthesized by a novel solution phase approach. Journal of Physical Chemistry B, 2004, 108(4): 1179-1182

    [5] Gates B, Wu Y Y, Yin Y D, Yang P D, Xia Y N. Single-crystalline nanowires of Ag2Se can be synthesized by templating against nanowires of trigonal Se. Journal of the American Chemical Society, 2001, 123(46): 11500-11501

    [6] Ge J P, Xu S, Zhuang J, Wang X, Peng Q, Li Y D. Synthesis of CdSe, ZnSe, and ZnxCd1 - xSe nanocrystals and their silica sheathed core/shell structures. Inorganic Chemistry, 2006, 45(13): 4922-4927

    [7] Li Y C, Zhong H Z, Li R, Zhou Y, Yang C H, Li Y F. High-yield fabrication and electrochemical characterization of tetrapodal CdSe, CdTe, and CdSexTe1 - x nanocrystals. Advanced Functional Materials, 2006, 16(13): 1705-1716

    [8] Jiang Z Y, Xie Z X, Xie S Y, Zhang X H, Huang R B, Zheng L S. High purity trigonal selenium nanorods growth via laser ablation under controlled temperature. Chemical Physics Letters, 2003, 368(3-4): 425-429

    [9] Mayers B, Liu K, Sunderland D, Xia Y N. Sonochemical synthesis of trigonal selenium nanowires. Chemistry of Materials, 2003, 15(20): 3852-3858

    [10] Cheng B, Samulski E T. Rapid, high yield, solution-mediated transformation of polycrystalline selenium powder into singlecrystal nanowires. Chemical Communications, 2003, (16): 2024-2025

    [11] Gates B, Mayers B, Cattle B, Xia Y N. Synthesis and characterization of uniform nanowires of trigonal selenium. Advanced Functional Materials, 2002, 12(3): 219-227

    [12] Wang Z H, Chen X Y, Liu J W, Yang X G, Qian Y T. Polymerassisted hydrothermal synthesis of trigonal selenium nanorod bundles. Inorganic Chemistry Communications, 2003, 6(10): 1329-1331

    [13] Cao X B, Xie Y, Zhang S Y, Li F Q. Ultra-thin trigonal selenium nanoribbons developed from series-wound beads. Advanced Materials, 2004, 16(7): 649-653

    [14] Zhang B, Ye X C, Dai W, Hou W Y, Zuo F, Xie Y. Biomoleculeassisted synthesis of single-crystalline selenium nanowires and nanoribbons via a novel flake-cracking mechanism. Nanotechnology, 2006, 17(2): 385-390

    [15] Gates B, Mayers B, Grossman A, Xia Y N. A sonochemical approach to the synthesis of crystalline selenium nanowires in solutions and on solid supports. Advanced Materials, 2002, 14(23): 1749-1752

    [16] Zhang B, Dai W, Ye X C, Zuo F, Xie Y. Photothermally assisted solution-phase synthesis of microscale tubes, rods, shuttles, and an urchin-like assembly of single-crystalline trigonal selenium. Angewandte Chemie International Edition, 2006, 45(16): 2571-2574

    [17] Pejova B, Najdoski M, Grozdanov I, Dey S K. Chemical bath deposition of nanocrystalline (111) textured Ag2Se thin films. Materials Letters, 2000, 43(5-6): 269-273

    [18] Lucovsky G, Mooradian A, Taylor W, Wright G B, Keezer R C. Identification of the fundamental vibrational modes of trigonal, α-monoclinic and amorphous selenium. Solid State Communications, 1967, 5(2): 113-117

    [19] Rajalakshmi M, Arora A K. Vibrational spectra of selenium nanoparticles dispersed in a polymer. Nanostructured Materials, 1999, 11(3): 399-405

    [20] Li Q, Yam V W. High-yield synthesis of selenium nanowires in water at room temperature. Chemical Communications, 2006, (9): 1006-1008

    [21] Cheng L, Shao MW, Chen D Y,Wei XW,Wang F X, Hua J. Highyield fabrication of t-Se nanowires via hydrothermal method and their photoconductivity. Journal of Materials Science Materials in Electronics, 2008, 19(12): 1209-1213

    [22] Guo Z, Liu J Y, Jia Y, Chen X, Meng F L, Li M Q, Liu J H. Template synthesis, organic gas-sensing and optical properties of hollow and porous In2O3 nanospheres. Nanotechnology, 2008, 19(34): 345704

    Zhenghua WANG, Shiyu ZHU. Rapid growth of t-Se nanowires in acetone at room temperature and their photoelectrical properties[J]. Frontiers of Optoelectronics, 2011, 4(2): 188
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