欢迎登录材料期刊网

材料期刊网

高级检索

综述了阳极氧化模板法、恒电位电沉积法、脉冲电沉积法制备一维纳米材料的机理,讨论了纳米材料的成核与生长的热力学和动力学,并结合电化学合成方法目前的应用和研究进展展望了一维纳米材料的电化学合成的前景.

参考文献

[1] 晋传贵;裴立宅;余海云.一维无机纳米材料[M].北京:冶金工业出版社,2007
[2] 张跃.一维纳米氧化锌纳米材料[M].北京:科学出版社,2010
[3] Hernandez-Velez M .Nanowires and 1D arrays fabrication: An overview[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2006(1/2):51-63.
[4] Wang S;Cheng G;Cheng K et al.The current image of single SnO2 nanobelt nanodevice studied by conductive atomic force microscopy[J].Nanoscale Res Lett,2011,6(01):541.
[5] Cho S;Kim S;Jang J W et al.Large-scale fabrication of sub-20-nm-diameter ZnO nanorod arrays at room temperature and their photoeatalytie activity[J].Journal of Physical Chemistry C,2009,113(24):10452.
[6] Kock, A;Tischner, A;Maier, T;Kast, M;Edtmaier, C;Gspan, C;Kothleitner, G .Atmospheric pressure fabrication of SnO2-nanowires for highly sensitive CO and CH4 detection[J].Sensors and Actuators, B. Chemical,2009(1):160-167.
[7] O. Lupan;V.V. Ursaki;G. Chai;L. Chow;G.A. Emelchenko;I.M. Tiginyanu;A.N. Gruzintsev;A.N. Redkin .Selective hydrogen gas nanosensor using individual ZnO nanowire with fast response at room temperature[J].Sensors and Actuators, B. Chemical,2010(1):56-66.
[8] Carreón-González, C.E.;De La Torre Medina, J.;Piraux, L.;Encinas, A. .Electrodeposition growth of nanowire arrays with height gradient profiles for microwave device applications[J].Nano letters,2011(5):2023-2027.
[9] 乔治·史塔古夫;李建玲;王新东.纳米电化学[M].北京:化学工业出版社,2010
[10] Yang G;Chen Y;Li L;Yang Y .Direct electrochemical determination of morphine on a novel gold nanotube arrays electrode.[J].Clinica chimica acta: International journal of clinical chemistry and applied molecular biology,2011(17/18):1544-1549.
[11] Hujdic J E;Taggart D K;Kung S C et al.Lead selenide nanowires prepared by lithographically patterned nanowire electrodeposition[J].J Phys Chem Lett,2010,1(07):1055.
[12] Yang, SL;Liu, XY;Zeng, XD;Xia, BY;Gu, JP;Luo, SL;Mai, NN;Wei, WZ .Fabrication of nano-copper/carbon nanotubes/chitosan film by one-step electrodeposition and its sensitive determination of nitrite[J].Sensors and Actuators, B. Chemical,2010(2):762-768.
[13] Lu Y;Li T;Zhao X;Li M;Cao Y;Yang H;Duan YY .Electrodeposited polypyrrole/carbon nanotubes composite films electrodes for neural interfaces.[J].Biomaterials,2010(19):5169-5181.
[14] Lupan O;Pauport T;Le Bahers T et al.High aspect ratio ternary Zn1-xCdxO nanowires by electrodeposition for light emitting diode applications[J].Journal of Physical Chemistry C,2011,115:14548.
[15] Li L;Li G;Zhang Y et al.Pulsed electrodeposition of large-area,ordered Bi1-xSbx nanowire arrays from aqueous solutions[J].Journal of Physical Chemistry B,2004,108(50):19380.
[16] 何伟 .Co,Ni纳米材料的电化学方法制备及机理研究[D].中国科学技术大学,2006.
[17] 屠振密,胡会利,于元春,高鹏.电沉积纳米晶材料制备方法及机理[J].电镀与环保,2006(04):4-8.
[18] Yarden, T.S.;Joselevich, E. ."Drawing with nanotubes": Creating nanowires with complex geometries by pulsed electrodeposition on self-organized carbon nanotube patterns[J].Nano letters,2010(11):4742-4749.
[19] 吴敏,张世超,林若虚.CdTe纳米线/纳米管薄膜电沉积法制备研究[J].半导体技术,2011(03):210-214.
[20] Shakya, P.;Cox, B.;Davis, D. .Giant Magnetoresistance and Coercivity of electrodeposited multilayered FeCoNi/Cu and CrFeCoNi/Cu[J].Journal of Magnetism and Magnetic Materials,2012(4):453-459.
[21] Pauporteé T;Bataille G;Joulaud L et al.Well-aligned ZnO nanowire arrays prepared by seed-layer-free electrodeposition and their cassie-wenzel transition after hydrophobization[J].Journal of Physical Chemistry C,2009,114(01):194.
[22] Bin Bin Li;Usha Philipose;Christina F. de Souza .Role of Electro-Deposition Parameters on Preparing Tailored Dimension Vertically-Aligned ZnO Nanowires[J].Journal of the Electrochemical Society,2011(5):D282-D285.
[23] Elias J;Tena-Zaera R;Levy-Clement C .Effect of the chemical nature of the anions on the electrodeposition of ZnO nanowire arrays[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2008(15):5736-5741.
[24] Pan H;Sun H;Poh C et al.Single-crystal growth of metallic nanowires with preferred orientation[J].Nanotechnology,2005,16:1559.
[25] Hernández-Pagán, E.A.;Wang, W.;Mallouk, T.E. .Template electrodeposition of single-phase p- and n-type copper indium diselenide (CuInSe_2) nanowire arrays[J].ACS nano,2011(4):3237-3241.
[26] Zhang, S.;Peng, F.;Zhang, H.;Liu, H.;Zhao, H. .Electrodeposition of polyhedral Cu_2O on TiO_2 nanotube arrays for enhancing visible light photocatalytic performance[J].Electrochemistry communications,2011(8):861-864.
[27] Yun, J.-H.;Ng, Y.H.;Huang, S.;Conibeer, G.;Amal, R. .Wrapping the walls of n-TiO_2 nanotubes with p-CuInS_2 nanoparticles using pulsed-electrodeposition for improved heterojunction photoelectrodes[J].Chemical communications,2011(40):11288-11290.
[28] Liu, Y.;Zhang, X.;Liu, R.;Yang, R.;Liu, C.;Cai, Q. .Fabrication and photocatalytic activity of high-efficiency visible-light-responsive photocatalyst ZnTe/TiO_2 nanotube arrays[J].Journal of Solid State Chemistry,2011(3):684-689.
[29] Yang S;Zeng X;Liu X et al.Electrocatalytic reduction and sensitive determination of nitrite at nano-copper coated multi-walled carbon nanotubes modified glassy carbon electrode[J].Journal of Electroanalytical Chemistry,2010,639(1-2):181.
[30] Fang Y;Liu J;Yu D J et al.Self-supported supercapacitor membranes:Polypyrrole-coated carbon nanotube networks enabled by pulsed electrodeposition[J].Journal of Power Sources,2010,195(02):674.
[31] Li W;Yu W;Yen C .Pulsed electrodeposition of Bi2Te3 and Bi2Te3/Te nanowire arrays from a DMSO solution[J].Electrochimica Acta,2011,58(01):510.
[32] Kashi M A;Ramazani A;Fallah Z .Magnetic properties improvement through off time between pulses and annealing in pulse electrodeposited CoZn nanowires[J].Journal of Alloys and Compounds,2011,509:8845.
[33] Almasi Kashi M;Ramazani A;Najafabadi F A et al.Controlled Cu content of electrodeposited CoCu nanowires through pulse features and investigations of microstructures and magnetic properties[J].Applied Surface Science,2011,257:9347.
[34] Swaminathan V;Liew H F;Lew W S et al.Photoelectrochemical studies of DNA-tagged biomolecules on Au and Au/Ni/Au multilayer nanowires[J].Nanoscale Res Lett,2011,6(01):535.
[35] Ghosh S;Hujdic J;Villicana-Bedolla A et al.Gold coresemiconductor shell nanowires prepared by lithographically patterned nanowire electrodeposition[J].Journal of Physical Chemistry C,2011,115:17670.
[36] Lantelme F;Kuroda K;Barhoun A .Electrochemical and thermodynamic properties of titanium chloride solutions in various alkali chloride mixtures[J].Electrochimica Acta,1998,44(2-3):421.
[37] Hie Hanzu;Thierry Djenizian;Gregorio F. Ortiz .Mechanistic Study of Sn Electrodeposition on TiO2 Nanotube Layers: Thermodynamics, Kinetics, Nucleation, and Growth Modes[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2009(48):20568-20575.
[38] Penner R M .Mesoscopic metal particles and wires by electrodeposition[J].Journal of Physical Chemistry B,2002,106(13):3339.
[39] Wu J M;Liou L B .Room temperature photo-induced phase transitions of VO2 nanodevices[J].Journal of Materials Chemistry,2011,21:5499.
[40] Qu, Y.;Liao, L.;Cheng, R.;Wang, Y.;Lin, Y.-C.;Huang, Y.;Duan, X. .Rational design and synthesis of freestanding photoelectric nanodevices as highly efficient photocatalysts[J].Nano letters,2010(5):1941-1949.
[41] Mourachkine A;Yazyev OV;Ducati C;Ansermet JP .Template Nanowires for Spintronics Applications: Nanomagnet Microwave Resonators Functioning in Zero Applied Magnetic Field[J].Nano letters,2008(11):3683-3687.
[42] Qin Kuang;Chang-Shi Lao;Zhou Li .Enhancing the Photon- and Gas-Sensing Properties of a Single SnO2 Nanowire Based Nanodevice by Nanoparticle Surface Functionalization[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2008(30):11539-11544.
[43] Liao L;Zheng Z;Yan B et al.Morphology controllable synthesis of r-Fe2O3 1D nanostructures:Growth mechanism and nanodevice based on single nanowire[J].Journal of Physical Chemistry,2008,100(112):10784.
[44] Wang Z L;Guo R;Li G R et al.Polyaniline nanotube arrays as high-performance flexible electrodes for electrochemical energy storage devices[J].Journal of Materials Chemistry,2012,22:2401.
[45] Yao-Yi Cheng;Shang-Chih Chou;Jun-An Chang .Development of flexible piezoelectric nanogenerator: Toward all wet chemical method[J].Microelectronic engineering,2011(9):3015-3019.
[46] Jin-Seo Noh;Hyunsu Kim;Beom Seok Kim .High-performance vertical hydrogen sensors using Pd-coated rough Si nanowires[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2011(40):15935-15939.
[47] Subrata Kundu;David Huitink;Hong Liang .Formation and Catalytic Application of Electrically Conductive Pt Nanowires[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2010(17):7700-7709.
[48] Nguyen, T.D.;Nagarah, J.M.;Qi, Y.;Nonnenmann, S.S.;Morozov, A.V.;Li, S.;Arnold, C.B.;McAlpine, M.C. .Wafer-scale nanopatterning and translation into high-performance piezoelectric nanowires[J].Nano letters,2010(11):4595-4599.
[49] Chang C J;Lee Y H;Dai C A et al.A large area bimaterial sheet of piezoelectric nanogenerators for energy harvesting:Effect of RF sputtering on ZnO nanorod[J].Microelectronic Engineering,2010,88(08):2236.
[50] Hu J Q;Ma X L;Shang N G et al.Large-scale rapid oxidation synthesis of SnO2 nanoribbons[J].Journal of Physical Chemistry B,2002,106(15):3823.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%