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高速剪切乳化机制备纳米氧化锌及形貌控制 被引量:2

Preparation and morphology control of nano-sized ZnO by using high-shear mulser
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摘要 提出了应用高速剪切乳化机制备纳米氧化锌材料的新方法,研究了反应时间、pH值、锌盐浓度、乳化机转速和搅拌方式等实验条件对氧化锌纳米材料形貌的影响.与其它方法相比,用该方法制备纳米氧化锌具有方法简单、条件易控、成本低廉、易于量产、纳米结构几何形状均一等优点. In this paper, we present the new preparation method of nano-sized ZnO mate- rial by using high shear mulser, and research the influence of the experimental conditions on the morphology of nano-sized ZnO material, the experimental conditions, including reaction time, the pH value, concentration of zinc salt , rotating speed and agitation way of the mulser. This method of preparing ZnO nanostructures, compared with oth- ers, is simpler, more controllable, cheaper, easier to mass production, and more uni- form of the morphology of ZnO nanostructures.
出处 《华中师范大学学报(自然科学版)》 CAS 北大核心 2013年第3期331-334,共4页 Journal of Central China Normal University:Natural Sciences
基金 国家自然科学基金(50872039 51172085) 湖北省教育厅教学研究基金(2009224) 湖北工业大学教学研究基金(2006015)
关键词 纳米氧化锌 高速剪切乳化机 形貌 nano zinc oxide high-shear mulser morphology
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  • 1Vayssieres L. Growth of arrayed nanorods and nanowires ofZnO from aqueous solutions [J ]. Adv Mater,2003,15:464-466.
  • 2Li Y,Meng G W. Zhang L D,et al. Ordered semiconductorZnO nanowire arrays and their photoluminescence properties[J]. Appl Phys Lett. 2000’ 76: 2011-2013.
  • 3Jih-Jen Wu, Sai-Chang Liu. Catalyst-free growth and charac-terization of ZnO nanorods[J]. J Phys Chem B, 2002,106:9546-9551.
  • 4Yang P, Yan H,Mao S, et al. Controlled growth of ZnOnanowires and their optical properties[J], Adv Func Mater,2002(12):323-330.
  • 5Park W I, Kim D H,Jung S-W, et al. Metalorganic vapor-phase epitaxial growth of vertically well-aligned ZnO nano-rods[J]. Appl Phys Lett, 2002. 80: 4232-4234.
  • 6Wu J J. Liu S-C. Low-temperature growth of well-aligned2nO nanorods by chemical vapor deposition[J]. Adv Mater.2002, 14: 215-218.
  • 7Yao B D , Chan Y F , Wang N. Formation of ZnO nano-structures by a simple way of thermal evaporation[J]. ApplPhys Lett, 2002, 81: 757-759.
  • 8Huang M H. Mao S, Feick H, et al. Room-temperature Ul-traviolet nanowire nanolasers[J], Science, 2001,292 : 1897-1899.
  • 9Zheng M J, Zhang L D, Li G H,et al. Fabrication and opti-cal properties of large-scale uniform zinc oxide nanowire ar-rays by one-step electrochemical deposition technique [J ].Chem Phys Lett, 2002, 363: 123-128.
  • 10Sun X M, Chen X,Deng Z X,et al. A CTAB-assisted hy-drothermal orientation growth of ZnO nanorods[J]. MaterChem Phys, 2003,78: 99-104.

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