一维定向生长的纳米ZnO阵列具有较高的高温强度、硬度、优异的化学稳定性和物理化学特性,在气敏传感器、场发射、纳米结构染料敏化太阳能电池等方面有着广泛的应用.制备一维ZnO结构的方法多种多样,如水热法、化学气相沉积法、超声化学法等.综述并比较了一维纳米ZnO阵列的结构特点、生长机理、制备方法及其在染料敏化太阳能电池方面的应用进展和光电特性,分析了一维纳米ZnO阵列的光电传输机理及国内外研究现状、应用前景和发展趋势.
参考文献
[1] | Wang ZL .Zinc oxide nanostructures: growth, properties and applications[J].Journal of Physics. Condensed Matter,2004(25):R829-R858. |
[2] | U. Ozgur;Ya. I. Alivov;C. Liu;A. Teke;M. A. Reshchikov;S. Dogan;V. Avrutin;S.-J. Cho;H. Morkoc .A comprehensive review of ZnO materials and devices[J].Journal of Applied Physics,2005(4) |
[3] | 陈冠雨,郑凯波,莫晓亮,孙大林,陈国荣.ZnO/TiO2复合纳米材料的制备及其在染料敏化太阳电池中的运用[J].真空科学与技术学报,2010(06):621-625. |
[4] | 陈海燕,王树林,丁浩冉.比较两种不同的方法制备ZnO纳米结构[J].中国科技信息,2010(21):25-26. |
[5] | 董向丹,王新昌,王俊喜,王爱华.不同结构的一维纳米ZnO的制备及其性能研究[J].半导体光电,2010(05):739-742. |
[6] | 徐超,曹立新,苏革,柳伟,宋亮,曲晓飞.氧化锌粉体的制备、表征及其光催化性能的研究[J].材料导报,2010(06):98-100,108. |
[7] | ZhangQF;DandeneauCS;ZhouXY et al.ZnOnanostructuresfordye-sensitizedsolarcells[J].Advanced Materials,2009,21:4087. |
[8] | 黄开金,闫里,谢长生.水热法制备纳米ZnO的研究现状[J].材料导报,2010(11):7-13,26. |
[9] | He JA.;Mosurkal R.;Samuelson LA.;Li L.;Kumar J. .Dye-sensitized solar cell fabricated by electrostatic layer-by-layer assembly of amphoteric TiO2 nanoparticles[J].Langmuir: The ACS Journal of Surfaces and Colloids,2003(6):2169-2174. |
[10] | 于哲勋,李冬梅,秦达,孙惠成,张一多,罗艳红,孟庆波.染料敏化太阳能电池的研究与发展现状[J].中国材料进展,2009(07):8-15. |
[11] | KroonJM;BakkerNJ;SmitHJP et al.Nanocrystallinedye-sensitizedsolarcellshavingmaximumperformance[J].ProgrPhotovoltaics:ResAppl,2007,15:1. |
[12] | Baxter JB;Aydil ES .Dye-sensitized solar cells based on semiconductor morphologies with ZnO nanowires[J].Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion,2006(5):607-622. |
[13] | LupanaO;GuerinVM;TiginyanuIM .Well-alignedarraysofverticallyorientedZnOnanowireselectrodepositedonITO-coatedglassandtheirintegrationindyesensitizedsolarcells[J].JPhotochemPhotobiolA:Chem,2010,211:65. |
[14] | VayssieresL .GrowthofarrayednanorodsandnanowiresofZnOfromaqueoussolutions[J].Advanced Materials,2003,15:464. |
[15] | Yengantiwar, A.;Sharma, R.;Game, O.;Banpurkar, A. .Growth of aligned ZnO nanorods array on ITO for dye sensitized solar cell[J].Current applied physics: the official journal of the Korean Physical Society,2011(Suppl.1):S113-S116. |
[16] | FangXM;PengLH;ShangXY et al.ControlledsynthesisofZnObranchednanorodarraysbyhierarchicalsolutiongrowthandapplicationindye-sensitizedsolarcells[J].Thin Solid Films,2011,519:6307. |
[17] | AmeenS;AkhtarMS;KimYS et al.InfluenceofseedlayertreatmentonlowtemperaturegrownZnOnanotubes:Performancesindyesensitizedsolarcells[J].Electrochimica Acta,2011,56:1111. |
[18] | ChenGY;ZhengKB;MoXL et al.Metal-freeindolinedyesensitizedzincoxidenanowiressolarcell[J].Materials Letters,2010,64:1336. |
[19] | Guo M;Diao P;Wang XD;Cai SM .The effect of hydrothermal growth temperature on preparation and photoelectrochemical performance of ZnO nanorod array films[J].International Journal of Quantum Chemistry,2005(10):3210-3215. |
[20] | Greene LE;Law M;Tan DH;Montano M;Goldberger J;Somorjai G;Yang PD .General route to vertical ZnO nanowire arrays using textured ZnO seeds[J].Nano letters,2005(7):1231-1236. |
[21] | Campbell JL;Breedon M;Latham K;Kalantar-Zadeh K .Electrowetting of superhydrophobic ZnO nanorods[J].Langmuir: The ACS Journal of Surfaces and Colloids,2008(9):5091-5098. |
[22] | HuaGM;ZhangY;ZhangJX et al.FabricationofZnOnanowirearraysbycyclegrowthinsurfactantlessaqueoussolutionandtheirapplicationsondye-sensitizedsolarcells[J].Materials Letters,2008,62:4109. |
[23] | WangYQ;SunYM;LiK .Dye-sensitizedsolarcellsbasedonorientedZnOnanowire-coveredTiO2nanoparticlecompositefilmelectrodes[J].Materials Letters,2009,63:1102. |
[24] | ChenJJ;DengH;WeiM .HydrothermalsynthesisandopticalpropertiesofZnOsingle-crystalhexagonalmicrotubes[J].MaterSciEngB,2009,163:157. |
[25] | XieY;JoshiP;DarlingSB et al.ElectrolyteeffectsonelectrontransportandrecombinationatZnOnanorodsfordye-sensitizedsolarcells[J].JPhysChemC,2010,114:17880. |
[26] | Kedem, N.;Edri, E.;Kokotov, M.;Cohen, H.;Bendikov, T.;Popovitz-Biro, R.;Von Huth, P.;Ginley, D.;Hodes, G. .Effect of Sb ions on the morphology of chemical bath-deposited ZnO films and application to nanoporous solar cells[J].Crystal growth & design,2010(10):4442-4448. |
[27] | Yun, S.;Lee, J.;Chung, J.;Lim, S. .Improvement of ZnO nanorod-based dye-sensitized solar cell efficiency by Al-doping[J].The journal of physics and chemistry of solids,2010(12):1724-1731. |
[28] | KarstN;ReyG;DoisneauB et al.FabricationandcharacterizationofacompositeZnOsemiconductoraselectrontransportinglayerindye-sensitizedsolarcells[J].MaterSciEngB,2011,176:653. |
[29] | GanXY;LiXM;GaoXD et al.ZnOnanowire/TiO2nanoparticlephotoanodespreparedbytheultrasonicirradiationassisteddip-coatingmethod[J].Thin Solid Films,2010,518:4809. |
[30] | ChaoCH;ChangCL;ChanCH et al.RapidthermalmeltedTiO2nano-particlesintoZnOnano-rodanditsapplicationfordyesensitizedsolarcells[J].Thin Solid Films,2010,518:7209. |
[31] | KimDS;JiR;JinH et al.Laser-interferencelithographytailoredforhighlysymmetricallyarrangedZnOnanowirearrays[J].Small,2007,3:76. |
[32] | Y. K. Su;S. M. Peng;L. W. Ji;C. Z. Wu;W. B. Cheng;C. H. Liu .Ultraviolet ZnO Nanorod Photosensors[J].Langmuir: The ACS Journal of Surfaces and Colloids,2010(1):603-606. |
[33] | Kim, T.-U.;Kim, J.-A.;Pawar, S.M.;Moon, J.-H.;Kim, J.H. .Creation of nanoscale two-dimensional patterns of ZnO nanorods using laser interference lithography followed by hydrothermal synthesis at 90 °C[J].Crystal growth & design,2010(10):4256-4261. |
[34] | ZhangJ;QueWX;JiaQY et al.NovelbilayerstructureZnObasedphotoanodeforenhancingconversionefficiencyindye-sensitizedsolarcells[J].JAlloysCompd,2011,509:7421. |
[35] | LiuZF;LiYB;LiuCC et al.PerformanceofZnOdyesensitizedsolarcellswithvariousnanostructuresasanodes[J].SolidStateSci,2011,13:1354. |
[36] | GonzalezVallsI;YuYH;BallesterosB et al.Synthesisconditions,lightintensityandtemperatureeffectontheperformanceofZnOnanorods-baseddyesensitizedsolarcells[J].J Power Sources,2011,196:6609. |
[37] | Masuda Y;Kato K .High c-axis oriented stand-alone ZnO self-assembled film[J].Crystal growth & design,2008(1):275-279. |
[38] | Ko, S.H.;Lee, D.;Kang, H.W.;Nam, K.H.;Yeo, J.Y.;Hong, S.J.;Grigoropoulos, C.P.;Sung, H.J. .Nanoforest of hydrothermally grown hierarchical ZnO nanowires for a high efficiency dye-sensitized solar cell[J].Nano letters,2011(2):666-671. |
[39] | PawarRC;ShaikhJS;ShindePS et al.Dyesensitizedsolarcellsbasedonzincoxidebottlebrush[J].Materials Letters,2011,65:2235. |
[40] | GaoPX;DingY;WangZL .Crystallographicorientation-alignedZnOnanorodsgrownbyatincatalyst[J].Nano Letters,2003,3:1315. |
[41] | Myung, Y.;Jang, D.M.;Sung, T.K.;Sohn, Y.J.;Jung, G.B.;Cho, Y.J.;Kim, H.S.;Park, J. .Composition-tuned ZnO - CdSSe Core - Shell nanowire arrays[J].ACS nano,2010(7):3789-3800. |
[42] | Suh DI;Lee SY;Kim TH;Chun JM;Suh EK;Yang OB;Lee SK .The fabrication and characterization of dye-sensitized solar cells with a branched structure of ZnO nanowires[J].Chemical Physics Letters,2007(4-6):348-353. |
[43] | ZengGY;NianKS;LeeKY .Characteristicsofadye-sensitizedsolarcellbasedonananodecombiningZnOnanostructureswithverticallyalignedcarbonnanotubes[J].DiamondRelatMater,2010,19:1457. |
[44] | Park, SK;Park, JH;Ko, KY;Yoon, S;Chu, KS;Kim, W;Do, YR .Hydrothermal-Electrochemical Synthesis of ZnO Nanorods[J].Crystal growth & design,2009(8):3615-3620. |
[45] | QiuaJH;GuoM;FengYJ et al.ElectrochemicaldepositionofbranchedhierarchicalZnOnanowirearraysanditsphotoelectrochemicalproperties[J].Electrochimica Acta,2011,56:5776. |
[46] | BiDQ;WuF;YueWJ et al.Deviceperformancecorrelatedwithstructuralpropertiesofverticallyalignednanorodarraysinpolymer/ZnOsolarcells[J].JPhysChemC,2010,114:13846. |
[47] | LeeJH;LeuIC;HsuMC et al.FabricationofalignedTiO2one-dimensionalnanostructuredarraysusingaone-steptemplatingsolutionapproach[J].Journal of Physical Chemistry B,2005,27:13056. |
[48] | A facile route to TiO_2 nanotube arrays for dye-sensitized solar cells[J].Journal of Crystal Growth,2009(3):757. |
[49] | LiuZF;LiuCC;YaJing et al.ControlledsynthesisofZnOandTiO2nanotubesbychemicalmethodandtheirapplicationindye-sensitizedsolarcells[J].Renewable Energy,2011,36:1177. |
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