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硅基AAO模板内电化学沉积ZnO纳米线及其光电性能研究 被引量:4

Study on Preparation and Photoelectric Properties of ZnO Nanowires within AAO/Si Substrate by Electrodeposition Process
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摘要 本文利用二次阳极氧化法在p型低阻〈100〉晶向的硅衬底上制备了AAO/Si,以硅基AAO为辅助模板,采用电化学沉积的方法以Zn(NO3).6H2O和HMT(C6H12N4)为原料,在80℃的水浴槽中制备了ZnO纳米线结构。采用SEM,XRD和拉曼光谱等手段对ZnO/AAO/Si复合结构进行表征。SEM图表明ZnO纳米线已成功组装到AAO/Si模板里,直径约45 nm,长度约为600 nm。XRD和拉曼光谱表明ZnO具有六角纤锌矿多晶结构。光致发光(PL)谱图表明ZnO/AAO/Si复合结构在565 nm附近有较宽黄绿发射峰,在395 nm附近有微弱的紫外发射峰。场发射测试结果表明,ZnO纳米线的场增强因子的β值为2490,场增强因子很高,具有广泛的应用前景。 AAO/Si substrate was prepared by a two-step anodization of aluminum film on the Si substrate.ZnO nanowires were synthesized by electrodeposition process at 80 ℃ in the water bath slot using zinc nitrate hexahydrate and diethylenetriamine with silica AAO template for auxiliary.The structure and optical properties of ZnO/AAO/Si composite structure were characterized by scanning electron microscopy(SEM),X-ray diffraction(XRD),Raman spectra and so on.Scan electron microscopy(SEM) results indicate that ZnO nanowires have been embedded into AAO/Si,whose diameter and length are 45 nm and 600 nm respectively.X-ray diffraction(XRD) and micro-Raman spectra indicated that ZnO have a hexagonal wurtzite structure.Photoluminescence(PL) spectra demonstrate that there is a strong yellow and green peak at 565 nm,and a weak purple emission at about 395 nm,which is the kind of peak of ZnO.The field emission(FE) results show that the enhanced factor β of ZnO in the ZnO/ AAO/Si composite structure is 2490.The high enhanced factor of this kind of ZnO have some potential practical applications in filed emission.
出处 《人工晶体学报》 EI CAS CSCD 北大核心 2012年第1期136-140,145,共6页 Journal of Synthetic Crystals
基金 天津市自然科学基金(09JCYBJC04400)资助项目
关键词 电化学 ZNO 场发射 electrodeposition ZnO field emission
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  • 1姚素薇,宋振兴,王宏智.Co/Cu多层纳米线阵列的制备与磁性能[J].物理化学学报,2007,23(8):1306-1310. 被引量:5
  • 2Wang J X, Sun X W, Yang Y, et al. Hydrothermally Grown Oriented ZnO Nanorod Arrays for Gas Sensing Applications[ J]. Nanotechnology, 2006,17:4995-4998.
  • 3Qiu j j, Li X M, He W Z, et al. The Growth Mechanism and Optical Properties of Uhralong ZnO Nanorod Arrays with a High Aspect Ratio by a Preheating Hydrothermal Method [ J ]. Nanotechnology,2009,20 : 155603-9.
  • 4Vayssieres L. Growth of Arrayed Nanorods and Nanowires of ZnO from Aqueous Solutions [ J ]. Adv. Mater. ,2003,15 (5) :464-466.
  • 5Chiu S H, Huang J C A. Chemical Bath Deposition of ZnO and Ni Doped ZnO Nanorod[J]. J. Non-Cryst. Solids ,2012,358:2453-2457.
  • 6Jin Z W, Fukumura T, Kawasaki M. High Throughput Fabrication of Transition-metal-doped Epitaxial ZnO Thin Films: A Series of Oxide-diluted Magnetic Semiconductors and Their Properties[J].Appl. Phys. Lett. ,2001,78:3824-3826.
  • 7A1-Harbi T. Hydrothermal Synthesis and Optical Properties of Ni Doped ZnO Hexagonal Nanodiscs [ J ]. J. Alloy. Cornpd. ,2011,509 (2) : 387-390.
  • 8Yu Z H, Ge S H, Zuo Y L, et al. Vacancy-induced Room-temperature Ferromagnetism in ZnO Rods Synthesized by Ni-doped Solution and Hydrothermal Method[J].Appl. Surf. Sci,2010,256(20) :5813-5817.
  • 9Liu Y M, Wang T, Sun X, et al. Structural and Photolumincscent Properties of Ni Doped ZnO Nanorod Arrays Prepared by Hydrothermal Method [ J]. Appl. Su9c. Sci ,2011,257:6540-6545.
  • 10Venkataiah G, Michael R S, Huang H L, et al. Microstructure and Magnetic Properties of Ni: ZnO Nanorod/Zn: NiO Nanowall Composite Structures[J].J. Phys. Chem. C,2010,114(39):16191-16196.

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