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氧化锌是多功能N型半导体材料,具有优良的气敏性能,在气体传感器方面具有广泛的用途.氧化锌气敏材料及测试方法进一步优化后,传感器具有更高的灵敏度和更广泛的适用性.对纳米氧化锌传感器的气敏机理、改善气敏性能的主要方法以及传感器在民用航空方面的应用做了详细的综述.

参考文献

[1] Wang, Z.L. .Splendid one-dimensional nanostructures of zinc oxide: A new nanomaterial family for nanotechnology[J].ACS nano,2008(10):1987-1992.
[2] 李博,刘顺强,刘磊,崔玉明,郭学锋,周幸福.杨桃状ZnO纳米片微球的制备及气敏性能的研究[J].无机化学学报,2010(04):591-595.
[3] Kolmakov A;Moskovits M .Chemical sensing and catalysis by one-dimensional metal-oxide nanostructures[J].Annual Rev Mater Res,2004,34:151.
[4] Li, Y.;Zou, Y.;Hou, Y. .Synthesis and characterization of simonkolleite nanodisks and their conversion into ZnO nanostructures[J].Crystal Research and Technology: Journal of Experimental and Industrial Crystallography,2011(3):305-308.
[5] Lou, Z.;Feng, Y.;Liu, X.;Wang, L.;Zhang, T. .Acetone sensing properties of hierarchical ZnO urchinlike structures by hydrothermal process[J].Biomedical Engineering: Applications, Basis and Communications,2012(2):99-103.
[6] 由丽梅,霍丽华,程晓丽,赵辉,高山.纺锤状氧化锌的制备及气敏性能研究[J].化学传感器,2013(01):60-63.
[7] 孙彦刚,陈志钢.微球状ZnO纳米粉体的制备与气敏性能研究[J].电子元件与材料,2010(06):1-3.
[8] 杨留方,王庆辉,王玉德.剑状微棒ZnO材料的水热合成与气敏性能研究[J].云南民族大学学报(自然科学版),2011(05):409-411,416.
[9] Dong-Suk Kang;Seok Kyu Han;Jung-Hyun Kim;Sang Mo Yang;Jae Goo Kim;Soon-Ku Hong;Dojin Kim;Hyojin Kim;Jung-Hoon Song .ZnO nanowires prepared by hydrothermal growth followed by chemical vapor deposition for gas sensors[J].Journal of Vacuum Science & Technology, B. Microelectronics and Nanometer Structures: Processing, Measurement and Phenomena,2009(3):1667-1672.
[10] Yang W;Wan F;Chen S et al.Hydrothermal growth and application of ZnO nanowire films with ZnO and TiO2 buffer layers in dye-sensitized solar cells[J].Nanoscale Res Lett,2009,4(12):1486.
[11] Ahn, MW;Park, KS;Heo, JH;Kim, DW;Choi, KJ;Park, JG .On-chip fabrication of ZnO-nanowire gas sensor with high gas sensitivity[J].Sensors and Actuators, B. Chemical,2009(1):168-173.
[12] We, TY;Yeh, PH;Lu, SY;Lin-Wang, Z .Gigantic Enhancement in Sensitivity Using Schottky Contacted Nanowire Nanosensor[J].Journal of the American Chemical Society,2009(48):17690-17695.
[13] Wang, GX;Park, JS;Park, MS;Gou, XL .Synthesis and high gas sensitivity of tin oxide nanotubes[J].Sensors and Actuators. B, Chemical,2008(1):313-317.
[14] 李玲 .碳纳米管掺杂半导体金属氧化物气敏性能研究[D].上海大学,2005.
[15] 刘艳丽,李桂芝.Au纳米粒子对ZnO分级结构的气敏特性影响[J].湖南大学学报(自然科学版),2013(06):69-73.
[16] Zhu Guoxing;Liu Yuanjun;Xu Huan et al.Photochemical deposition of Ag nanocrystals on hierarchical ZnO microspheres and their enhanced gas-sensing properties[J].Cryst Eng Comm,2012,14:719.
[17] Duy-Thach Phan;Gwiy-Sang Chung.CO gas sensing using Ga doping ZnO nanorods by hydrothermal method:Effects of defects-controlled[A].Nuremberg,Germany,2012
[18] Rout CS;Krishna SH;Vivekchand SRC;Govindaraj A;Rao CNR .Hydrogen and ethanol sensors based on ZnO nanorods, nanowires and nanotubes[J].Chemical Physics Letters,2006(4-6):586-590.
[19] Changhyun Jin;Sunghoon Park;Hyunsu Kim .CO Gas-Sensor Based on Pt-Functionalized Mg-Doped ZnO Nanowires[J].Bulletin of the Korean Chemical Society,2012(6):1993-1997.
[20] 白翠彩,刘秀军,郭玉高.锡掺杂氧化锌薄膜乙醇气敏性的研究[J].天津工业大学学报,2012(01):13-16.
[21] Wang, J.X.;Sun, X.W.;Yang, Y.;Kyaw, K.K.A.;Huang, X.Y.;Yin, J.Z.;Wei, J.;Demir, H.V. .Free-standing ZnO-CuO composite nanowire array films and their gas sensing properties[J].Nanotechnology,2011(32):325704-1-325704-7.
[22] 范会涛,曾毅,杨海滨,郑学军,刘丽,张彤.ZnO-CuO纳米复合氧化物的制备及其气敏性能[J].物理化学学报,2008(07):1292-1296.
[23] 杨勇,柏自奎,张顺平,蔡水洲,曾大文,谢长生.纳米ZnO基掺杂气敏元件阵列的制备与特性[J].电子元件与材料,2007(02):46-48,51.
[24] 桂阳海,张勇,王焕新,徐甲强,李超.气敏元件室温光激发气敏性能研究[J].电子元件与材料,2008(02):13-15,22.
[25] Zhang WH;Zhang WD .Fabrication of SnO2-ZnO nanocomposite sensor for selective sensing of trimethylamine and the freshness of fishes[J].Sensors and Actuators, B. Chemical,2008(2):403-408.
[26] Woo-Jin LEE;Joongoo KANG;K.J.CHANG .p-Type Doping and Compensation in ZnO[J].Journal of the Korean Physical Society,2008(1):196-201.
[27] 牛新书,杜卫平,杜卫民,蒋凯.掺杂稀土氧化物的ZnO材料的制备及气敏性能[J].稀土,2003(06):44-47.
[28] 王晓平.稀土掺杂ZnO半导体气敏传感器的性能研究[J].湘潭大学自然科学学报,1999(04):109-111.
[29] 刘芳 .稀土掺杂ZnO纳米纤维的制备及气敏性能研究[D].郑州大学,2013.
[30] Shan-Wei Fan;Arvind K. Srivastava;Vinayak P. Dravid .UV-activated room-temperature gas sensing mechanism of polycrystalline ZnO[J].Applied physics letters,2009(14):142106-1-142106-3.
[31] 张洪群,元光,李春.LED光激活氧化锌纳米棒的乙醇气敏特性[J].发光学报,2012(04):404-407.
[32] 李健,李海兰,田野,宋淑芳.掺杂和热处理对纳米ZnO薄膜气敏特性影响[J].传感器技术,2002(03):61-64.
[33] 刘丽 .用富集方法提高气敏元件对甲醛的响应[D].大连理工大学,2009.
[34] 王凯.民航飞机火灾预防及扑救对策[J].武警学院学报,2007(08):14-16.
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