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Sn掺杂ZnO纳米棒的制备及表征 被引量:2

Preparation and Characterization of Sn-doped ZnO Nanorods
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摘要 以Zn(Ac)2.2H2O和LiOH.H2O作为反应物,加入一定量的SnCl4.5H2O,以超声辅助醇热法制备出一系列不同Sn掺杂浓度的ZnO纳米棒。用XRD、TEM、FT-IR和EDX对所合成的样品进行表征。结果表明醇热18h的纯ZnO晶体形态多为棒状,粒径分布均匀,长度在45 nm左右,且分散性良好;而掺Sn的ZnO纳米棒的直径和长度则随着掺杂浓度的增大而增长。掺杂后的ZnO晶体仍为六方纤锌矿结构,但随着Sn掺杂浓度的增大,晶体的结晶性降低。在室温下对掺Sn的ZnO样品进行荧光光谱检测,可以观察到3个发射峰,包括:在400-410 nm处的紫色发射峰,在455-470 nm蓝色发射峰,在530 nm附近的绿光发射峰;随着Sn掺杂浓度的增大,发射峰的强度逐渐降低。 ZnO nanorods with different Sn doping concentrations have been synthesized via a ultrasound-assisted alcohol-thermal method with Zn(Ac)2·2H2O,LiOH·H2O and SnCl4·5H2O as starting materials.XRD,TEM,FT-IR and EDX were employed to characterize the as-prepared samples.The results show that after 18 h alcohol thermal processing the undoped ZnO is mostly in the crystal form of rods with length about 45 nm,uniform size distribution and good dispersion.However,the diameter and length of the Sn-doped ZnO nanorods increase with the enhancement of doping concentration.The Sn-doped ZnO is still hexagonal wurtzite structure,but its crystallinity gradually reduces with the increase of doping concentration.The fluorescence spectrum of ZnO measured at room temperature shows three emission peaks of the Sn-doped ZnO nanorods,such as a violet emission peak at 400~410 nm,a blue peak at 455~470 nm and a green peak at about 530 nm.The emission intensity of the Sn-doped ZnO decreases gradually with the increase of doping concentration.
出处 《矿冶工程》 CAS CSCD 北大核心 2010年第4期98-100,105,共4页 Mining and Metallurgical Engineering
关键词 ZNO纳米棒 掺杂 超声 醇热法 ZnO nanorod doping ultrasound alcohol-thermal process
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  • 1周雄图,曾祥耀,张永爱,郭太良.Al掺杂四针状ZnO纳米结构的制备及其光致发光和场发射特性[J].发光学报,2013,34(11):1424-1429. 被引量:6
  • 2史小龙,赵小如,孙慧楠,段利兵,刘金铭,陈安琪.Sn掺杂对ZnO薄膜结构和光电性能的影响[J].人工晶体学报,2012,41(S1):280-284. 被引量:4
  • 3张富春,邓周虎,阎军锋,张志勇.ZnO电子结构与光学性质的第一性原理计算[J].光学学报,2006,26(8):1203-1209. 被引量:40
  • 4Tsay C Y, Cheng H C, Tung Y T, et al. Effect of Sn-doped on micro structural and optical properties of ZnO thin films deposited by sol-gel method[J]. Thin Solid Films, 2008, 517(3) : 1032-1036. 被引量:1
  • 5Holmelund E, Schou J, Tougaard S, el at. Pure ZnO and Sn-doped ZnO films produced by pulsed laser deposition[J]. Applied Surface Science, 2002, 197(1): 467-471. 被引量:1
  • 6Jung M, Kim S, Ju S. Enhancement of green emission from Sn-doped ZnO nanowires[J]. Optical Materials, 2011, 33 (3) : 280-283. 被引量:1
  • 7Chen K J, Hung F Y, Chen Y T, et al. Surface characteristics, optical and electrical properties on sol-gel synthesized Sn-doped ZnO thin fil[J] Materials Transactions, 2010, 5l(7) : 1340-1345. 被引量:1
  • 8Shelke V, Sonawane B K, Bhole M P, et al. Electrical and optical properties of transparent conducting tin doped ZnO thin films[J]. Journal of Materials Science, 2012, 23(2) : 451 456. 被引量:1
  • 9Li S Y, Lin P, Lee C Y, et al. Effect of Sn dopant on the properties of ZnO nanowires[J]. Journal of Physics D, 2004, 37(16) : 2274-2282. 被引量:1
  • 10Mishra S K, Bayan S, Shankar R, etag. Efficient UV photosensitive and photoluminescence properties of sol-gel derived Sn doped ZnO nanostructures[J]. Sensors and Actuators A, 2014, 211(5) : 8-14. 被引量:1

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