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介绍了纳米立方体、三角形纳米棱柱、纳米棒、纳米线、纳米管、树枝状、片状、纳米盘、纳米带等纳米结构银的制备方法,包括溶液还原沉淀法、光诱导转化法、辐射还原法、电化学沉积法、模板法、微波或超声波辅助法、水热法、微乳液法等.并对纳米结构银制备方法存在的问题进行了分析.

参考文献

[1] LIU Tao,LIN Lin,ZHAO Hong,JIANG Long.DNA and RNA sensor[J].中国科学B辑(英文版),2005(01):1-10.
[2] Kikuo Okuyama;Wuled Lenggoro;Toru Iwaki.Nanoparticle preparation and its application-a nanotechnology particle project in Japan[A].Banff Canada:IEEE Computer Society,2004:369-372.
[3] Newton-Howes J.;Heath D.D.;Shoemaker C.B.;Grant W.N. .Characterisation and expression of an Hsp70 gene from Parastrongyloides trichosuri[J].International Journal for Parasitology,2006(4):467-474.
[4] Maier SA.;Kik PG.;Meltzer S.;Requicha AAG.;Atwater HA.;Brongersma ML. .Plasmonics - A route to nanoscale optical devices[J].Advanced Materials,2001(19):1501-0.
[5] Prashant V. Kamat .Photophysical, Photochemical and Photocatalytic Aspects of Metal Nanoparticles[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,2002(32):7729-7744.
[6] Marie-Paule Pileni .Magnetic Fluids: Fabrication, Magnetic Properties, and Organization Of Nanocrystals[J].Advanced functional materials,2001(5):323-336.
[7] Jackson J B;Halas N J .Silver nanoshells:variations in morphologies and optical properties[J].Journal of Physical Chemistry B,2001,105(14):2743-2746.
[8] Sarah L. Westcott;Steven J. Oldenburg;T. Randall Lee;Naomi J. Halas .Construction of simple gold nanoparticle aggregates with controlled plasmon-plasmon interactions[J].Chemical Physics Letters,1999(5/6):651-655.
[9] Younan Xia;Naomi J. Halas .Shape-Controlled Synthesis and Surface Plasmonic Properties of Metallic Nanostructures[J].MRS bulletin,2005(5):338-343.
[10] Traci Jensen;Lance Kelly;Anne Lazarides et al.Electrodynamics of noble metal nanoparticles and nanoparticle clusters[J].Journal of Cluster Science,1999,10(02):295-317.
[11] Kottmann J P;Martin O J F;Smith D R et al.Plasmon resonances of silver nanowires with a nonregular cross section[J].Physical Review B,2001,64(23):1-10.
[12] Ivan O. Sosa;Cecila Noguez;Ruben G. Barrera .Optical Properties of Metal Nanoparticles with Arbitrary Shapes[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,2003(26):6269-6275.
[13] Sun YG.;Xia YN. .Gold and silver nanoparticles: A class of chromophores with colors tunable in the range from 400 to 750 nm[J].The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry,2003(6):686-691.
[14] Sihai Chen;Scott Webster;Richard Czerw;Jianfeng Xu;David L. Carroll .Morphology Effects on the Optical Properties of Silver Nanopartlcles[J].Journal of nanoscience and nanotechnology,2004(3):254-259.
[15] Catherine J. Murphy;Nikhil R. Jana .Controlling the Aspect Ratio of Inorganic Nanorods and Nanowires[J].Advanced Materials,2002(1):80-82.
[16] Zhou H H;Fan F R;Jiang Y X.SERS and SEM characterization on silver nanocubes with various sizes[A].Gold Coast,Queensland,Austra:CSIRO Publishing,2004:246-247.
[17] Lisa A. Dick;Adam D. McFarland;Christy L. Haynes;Richard P. Van Duyne .Metal Film over Nanosphere (MFON) Electrodes for Surface-Enhanced Raman Spectroscopy (SERS): Improvements in Surface Nanostructure Stability and Suppression of Irreversible Loss[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,2002(4):853-860.
[18] Cao YWC;Jin RC;Mirkin CA .Nanoparticles with Raman spectroscopic fingerprints for DNA and RNA detection[J].Science,2002(5586):1536-1540.
[19] D.A. Stuart;A.J. Haes;C.R. Yonzon;E.M. Hicks;R.P. Van Duyne .Biological applications of localised surface plasmonic phenomenae[J].IEE proceedings.Part M.Nanobiotechnology,2005(1):13-32.
[20] Aslan K;Gryczynski I;Malicka J;Matveeva E;Lakowicz JR;Geddes CD .Metal-enhanced fluorescence: an emerging tool in biotechnology.[J].Current Opinion in Biotechnology,2005(1):55-62.
[21] R. J. Chimentao;I. Kirm;F. Medina;X. Rodriguez;Y. Cesteros;P. Salagre;J. E. Sueiras .Different morphologies of silver nanoparticles as catalysts for the selective oxidation of styrene in the gas phase[J].Chemical communications,2004(7):846-847.
[22] Shi A C;Masel R I .The effects of gas adsorption on particle shapes in supported platinum catalysts[J].Journal of Catalysis,1989,120(02):421-431.
[23] Benjamin Wiley;Yugang Sun;Brian Mayers;Younan Xia .Shape-Controlled Synthesis of Metal Nanostructures:The Case of Silver[J].Chemistry: A European journal,2005(2):455-463.
[24] Benjamin Wiley;Yugang Sun;Jingyi Chen;Hu Cang;Zhi-Yuan Li;Xingde Li;Younan Xia .Shape-Controlled Synthesis of Silver and Gold Nanostructures[J].MRS bulletin,2005(5):356-361.
[25] Ombretta Masala;Ram Seshadri .SYNTHESIS ROUTES FOR LARGE VOLUMES OF NANOPARTICLES[J].Annual review of materials research,2004(0):41-81.
[26] Masaharu Tsuji;Takeshi Tsuji;Masayuki Hashimoto .Microwave-Assisted Synthesis of Metallic Nanostructures in Solution[J].Chemistry: A European journal,2005(2):441-452.
[27] Yugang Sun;Younan Xia .Shape-controlled synthesis of gold and silver nanoparticles[J].Science,2002,298(5601):2176-2179.
[28] Yugang Sun;Younan Xia .Mechanistic Study on the Replacement Reaction between Silver Nanostructures and Chloroauric Acid in Aqueous Medium[J].Journal of the American Chemical Society,2004(12):3892-3901.
[29] Wiley B;Herricks T;Sun YG;Xia YN .Polyol synthesis of silver nanoparticles: Use of chloride and oxygen to promote the formation of single-crystal, truncated cubes and tetrahedrons[J].Nano letters,2004(9):1733-1739.
[30] Sang Hyuk Im;Yun Tack Lee;Benjamin Wiley;Younan Xia .Large-Scale Synthesis of Silver Nanocubes: The Role of HCl in Promoting Cube Perfection and Monodispersity[J].Angewandte Chemie,2005(14):2154-2157.
[31] Dabin Yu;Vivian Wing-Wah Yam .Controlled Synthesis of Monodisperse Silver Nanocubes in Water[J].Journal of the American Chemical Society,2004(41):13200-13201.
[32] Dabin Yu;Vivian Wing-Wah Yam .Hydrothermal-induced assembly of colloidal silver spheres into various nanoparticles on the basis of HTAB-modified silver mirror reaction[J].Journal of Physical Chemistry B,2005,109(02):5497-5503.
[33] Liu FK;Ko FH .Separation and study of the optical properties of silver nanocubes by capillary electrophoresis[J].Chemistry Letters,2004(7):902-903.
[34] Rongchao Jin;Yunwei Cao;Chad A Mirkin et al.Photoinduced conversion of silver nanospheres to nanoprisms[J].Science,2001,294(5548):1901-1903.
[35] Metraux G S;Cao Y C;Jin R C et al.Triangular nanoframes made of gold and silver[J].Nano Letters,2003,3(04):519-522.
[36] Rongchao Jin;Charles Cao Y;Encai Hao et al.Controlling anisotropic nanoparticle growth through plasmon excitation[J].Nature,2003,425(6957):487-490.
[37] Yugang Sun;Younan Xia .Triangular Nanoplates of Silver: Synthesis, Characterization, and Use as Sacrificial Templates For Generating Triangular Nanorings of Gold[J].Advanced Materials,2003(9):695-699.
[38] Yugang Sun;Brian Mayers;Younan Xia .Transformation of Silver Nanospheres into Nanobelts and Triangular Nanoplates through a Thermal Process[J].Nano letters,2003(5):675-679.
[39] Amilcar Machulek Junior;Hueder Paulo Moises de Oliveira;Marcelo Henrique Gehlen .Preparation of silver nanoprisms using poly(N-vinyl-2-pyrrolidone) as a colloid-stabilizing agent and the effect of silver nanoparticles on the photophysical properties of cationic dyes[J].Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology,2003(9):921-925.
[40] Can Xue;Zhi Li;Chad A. Mirkin .Large-Scale Assembly of Single-Crystal Silver Nanoprism Monolayers[J].Small,2005(5):513-516.
[41] Gabriella S. Metraux;Chad A. Mirkin .Rapid Thermal Synthesis of Silver Nanoprisms with Chemically Tailorable Thickness[J].Advanced Materials,2005(4):412-415.
[42] Sihai Chen;David L. Carroll .Synthesis and Characterization of Truncated Triangular Silver Nanoplates[J].Nano letters,2002(9):1003-1007.
[43] Tetsushi Yamamoto;Hengbo Yin;Yuji Wada .Morphology-Control in Microwave-Assisted Synthesis of Silver Particles in Aqueous Solutions[J].Bulletin of the Chemical Society of Japan,2004(4):757-761.
[44] Roosen AR.;Carter WC. .Simulations of microstructural evolution: anisotropic growth and coarsening[J].Physica. A, Theoretical and Statistical Physics,1998(1/2):232-247.
[45] Isabel Pastoriza-Santos;Luis M. Liz-Marzan .Synthesis of Silver Nanoprisms in DMF[J].Nano letters,2002(8):903-905.
[46] 贺蓉,钱雪峰,印杰,朱子康,王海林.银纳米棱镜的形成及其光学性能研究[J].高等学校化学学报,2003(08):1341-1345.
[47] Rong He;Xuefeng Qian;Jie Yin;Zikang Zhu .Preparation of polychrome silver nanoparticles in different solvents[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2002(12):3783-3786.
[48] Yugang Sun;Byron Gates;Brian Mayers;Younan Xia .Crystalline Silver Nanowires by Soft Solution Processing[J].Nano letters,2002(2):165-168.
[49] Sun YG.;Yin YD.;Mayers BT.;Herricks T.;Xia YN. .Uniform silver nanowires synthesis by reducing AgNO3 with ethylene glycol in the presence of seeds and poly(vinyl pyrrolidone)[J].Chemistry of Materials,2002(11):4736-4745.
[50] Deliang Chen;Lian Gao .Large-scale growth and end-to-end assembly of silver nanorods by PVP-directed polyol process[J].Journal of Crystal Growth,2004(1/3):216-222.
[51] Younan Xia;Peidong Yang;Yugang Sun et al.One-dimensional nanostructures:synthesis,characterization,and applications[J].Advanced Materials,2003,15(05):353-389.
[52] Gao Y.;Jiang P.;Liu DF.;Yuan HJ.;Yan XQ.;Zhou ZP.;Wang JX.;Song L. Liu LF.;Zhou WY.;Wang G.;Wang CY.;Xie SS. .Synthesis, characterization and self-assembly of silver nanowires[J].Chemical Physics Letters,2003(1/2):146-149.
[53] Jiang P;Li SY;Xie SS;Gao Y;Song L .Machinable long PVP-stabilized silver nanowires[J].Chemistry: A European journal,2004(19):4817-4821.
[54] Gao Y;Jiang P;Song L;Liu LF;Yan XQ;Zhou ZQ;Liu DF;Wang JX;Yuan HJ;Zhang ZX .Growth mechanism of silver nanowires synthesized by polyvinylpyrrolidone-assisted polyol reduction[J].Journal of Physics, D. Applied Physics: A Europhysics Journal,2005(7):1061-1067.
[55] Yugang Sun;Brian Mayers;Thurston Herricks;Younan Xia .Polyol Synthesis of Uniform Silver Nanowires: A Plausible Growth Mechanism and the Supporting Evidence[J].Nano letters,2003(7):955-960.
[56] 赵启涛,侯立松,黄瑞安.软化学法低温合成银纳米线及其生长机制[J].化学学报,2003(10):1671-1674.
[57] Qitao Zhao;Jianrong Qiu;Chongjun Zhao;Lisong Hou;Congshan Zhu .Synthesis and Formation Mechanism of Silver Nanowires by a Templateless and Seedless Method[J].Chemistry Letters,2005(1):30-31.
[58] Michael Giersig;Isabel Pastoriza-Santos;Luis M.Liz-Marzan .Evidence of an aggregative mechanism during the formation of silver nanowires in N,N-dimethylformamide[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2004(4):607-610.
[59] K. K. Caswell;Christopher M. Bender;Catherine J. Murphy .Seedless, Surfactantless Wet Chemical Synthesis of Silver Nanowires[J].Nano letters,2003(5):667-669.
[60] Jian-Qiang Hu;Qing Chen;Zhao-Xiong Xie;Guo-Bin Han;Rui-Hong Wang;Bin Ren;Yong Zhang;Zhi-Lin Yang;Zhong-Qun Tian .A Simple and Effective Route for the Synthesis of Crystalline Silver Nanorods and Nanowires[J].Advanced functional materials,2004(2):183-189.
[61] Ju Weigang;Zhang Xiaohong;Wu Shikang .Wet Chemical Synthesis of Ag Nanowires Array at Room Temperature[J].Chemistry Letters,2005(4):510-511.
[62] Nikhil R.Jana;Latha Gearheart;Catherine J.Murphy .Wet chemical synthesis of silver nanorods and nanowires of controllable aspect ratio[J].Chemical communications,2001(7):617-618.
[63] Nikhil R. Jana .Shape Effect in Nanoparticle Self-Assembly[J].Angewandte Chemie,2004(12):1536-1540.
[64] Lee GJ.;Shin SI.;Kim YC.;Oh SG. .Preparation of silver nanorods through the control of temperature and pH of reaction medium[J].Materials Chemistry and Physics,2004(2/3):197-204.
[65] Arnim Henglein;Michael Giersig .Formation of colloidal silver nanoparticles:capping action of citrate[J].Journal of Physical Chemistry B,1999,103(44):9533-9539.
[66] Jadab Sharma;Nirmalya K.Chaki;Subhramannia Mahima;Rajesh G.Gonnade;Imtiaz S.Mulla;Kunjkrishna ijayamohanan .Turning the aspect ration of silver nanostructures:the effect of solvent mole fraction and 4-aminothiophenol concentration[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2004(6):970-975.
[67] Zhou Y.;Wang CY.;Li XG.;Zhu YR.;Chen ZY.;Yu SH. .A novel ultraviolet irradiation photoreduction technique for the preparation of single-crystal Ag nanorods and Ag dendrites[J].Advanced Materials,1999(10):850-852.
[68] Yong Zhou;Lingyun Hao;Yuan Hu;Yurui Zhu;Zuyao Chen .Synthesis of Nanowires and Coral-Shaped Nanostructures of Ag by an Ultraviolet Photo-Reduction Technique at Room Temperature[J].Chemistry Letters,2000(0):1192-1193.
[69] K. Zou;X.H. Zhang;X.F. Duan;X.M. Meng;S.K. Wu .Seed-mediated synthesis of silver nanostructures and polymer/ silver nanocables by UV irradiation[J].Journal of Crystal Growth,2004(1/2):285-291.
[70] 邹凯,张晓宏,吴世康,段晓峰.光化学法合成银纳米线及其形成机理的研究[J].化学学报,2004(18):1771-1774.
[71] Cuiying Wang;Maohui Chen;Guangming Zhu;Zugeng Lin .A Novel Soft-Template Technique to Synthesize Metal Ag Nanowire[J].Journal of Colloid and Interface Science,2001(2):362-364.
[72] Takeshi Tsuji;Takanori Higuchi;Masaharu Tsuji .Laser-induced Structural Conversions of Silver Nanoparticles in Pure Water-Influence of Laser Intensity-[J].Chemistry Letters,2005(4):476-477.
[73] Tsuji T.;Watanabe N.;Tsuji M. .Laser induced morphology change of silver colloids: formation of nano-size wires[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2003(1/4):189-193.
[74] Fumitaka Mafune;Jun-ya Kohno;Yoshihiro takeda;Tamotsu Kondow .Growth of Gold Clusters into Nanoparticles in a Solution Following Laser-Induced Fragmentation[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,2002(34):8555-8561.
[75] F.-K. Liu;P.-W. Huang;T.-C. Chu .Gold seed-assisted synthesis of silver nanomaterials under microwave heating[J].Materials Letters,2005(8/9):940-944.
[76] Liu FK;Huang PW;Chang YC;Ko CJ;Ko FH;Chu TC .Formation of silver nanorods by microwave heating in the presence of gold seeds[J].Journal of Crystal Growth,2005(3/4):439-445.
[77] Liu FK;Ko FH;Huang PW;Wu CH;Chu TC .Studying the size/shape separation and optical properties of silver nanoparticles by capillary electrophoresis[J].Journal of chromatography, A: Including electrophoresis and other separation methods,2005(1):139-145.
[78] Masaharu Tsuji;Takeshi Tsuji;Yuki Nishizawa;Masayuki Hashimoto .Syntheses of Silver Nanofilms,Nanorods,and Nanowires by a Microwave-polyol Method in the Presence of Pt Seeds and Polyvinylpyrrolidone[J].Chemistry Letters,2004(4):370-371.
[79] Ying-Jie Zhu;Xian-Luo Hu .Microwave-assisted polythiol reduction method: a new solid-liquid route to fast preparation of silver nanowires[J].Materials Letters,2004(9):1517-1519.
[80] Yujie Xiong;Yi Xie;Guoan Du;Xianming Liu;Xiaobo Tian .Ultrasound-Assisted Self-Regulation Route to Ag Nanorods[J].Chemistry Letters,2002(1):98-99.
[81] Jun-Jie Zhu;Xue-Hong Liao;Xiao-Ning Zhao .Preparation of silver nanorods by electrochemical methods[J].Materials Letters,2001(2):91-95.
[82] Jun-Jie Zhu;Qiao-Feng Qiu;Hui Wang;Jian-Rong Zhang .Synthesis of silver nanowires by a sonoelectrchecial method[J].Inorganic Chemistry Communications,2002(4):242-244.
[83] Walter E C;Murray B J;Favier F et al.Noble and coinage metal nanowires by electrochemical step edge decoration[J].Journal of Physical Chemistry B,2002,106(44):11407-11411.
[84] Zhenghua Wang;Jianwei Liu;Xiangying Chen;Junxi Wan;Yitai Qian .A Simple Hydrothermal Route to Large-Scale Synthesis of Uniform Silver Nanowires[J].Chemistry: A European journal,2005(1):160-163.
[85] Wang ZH;Chen XY;Liu JW;Zhang M;Qian YT .Glucose reduction route synthesis of uniform silver nanowires in large-scale[J].Chemistry Letters,2004(9):1160-1161.
[86] Byung Hee Hong;Sung Chul Bae;Chi-Wan Lee et al.Ultrathin single-crystalline silver nanowire arrays formed in an ambient solution phase[J].Science,2001,294(5541):348-351.
[87] Kwang S Kim .Self-assembled organic nanotubes and self-synthesized silver subnanowire arrays in an ambient solution phase[J].Current Applied Physics,2002,2(01):65-69.
[88] Silke Behrens;Jin Wu;Wilhelm Habicht;Eberhard Unger .Silver Nanoparticle and Nanowire Formation by Microtubule Templates[J].Chemistry of Materials,2004(16):3085-3090.
[89] Reches M.;Gazit E. .Casting metal nanowires within discrete self-assembled peptide nanotubes[J].Science,2003(5619):625-627.
[90] Jeremy Sloan;David M. Wright;Hee-Gweon Woo;Sam Bailey;Gareth Brown;Andrew P. E. York;Karl S. Coleman;John L. Hutchison;Malcolm L. H. Green .Capillarity and silver nanowire formation observed in single walled carbon nanotubes[J].Chemical communications,1999(8):699-700.
[91] Z.L.Zhang;B.Li .Filling of single-walled carbon nanotubes with silver[J].Journal of Materials Research,2000(12):2658-2661.
[92] Chung-Yang Lee;Chu-Jung Ko;Fu-Hsiang Ko.Solution-based silver nanowires filling into carbon nanotubes by microwave heating technology[A].Tokyo,Japan:Japan Society of Applied Physics,2003:212-213.
[93] Sivakumar K;Shaoxin Lu;Panchapakesan B.Metallic and semiconducting nanowires from single wall carbon nanotubes[A].San Francisco,CA,USA:Materials Research Society,2004:341-346.
[94] Panchapakesan B;Kousik Sivakumar;Shaoxin Lu .Metallic nanowires from carbon nanotube building blocks:the effect of atomic defects on the nanotube influencing nanowire growth[J].American Society of Mechanical Engineers EEP,2003,3:193-201.
[95] Mladen Barbic;Jack J. Mock;D. R. Smith;S. Schultz .Single crystal silver nanowires prepared by the metal amplification method[J].Journal of Applied Physics,2002(11):9341-9345.
[96] J. J. Mock;S. J. Oldenburg;D. R. Smith;D. A. Schultz;S. Schultz .Composite Plasmon Resonant Nanowires[J].Nano letters,2002(5):465-469.
[97] Mingliang Tian;Jinguo Wang;James Kurtz;Thomas E. Mallouk;M. H. W. Chan .Electrochemical Growth of Single-Crystal Metal Nanowires via a Two-Dimensional Nucleation and Growth Mechanism[J].Nano letters,2003(7):919-923.
[98] Jinguo Wang;Mingliang Tian;Thomas E. Mallouk;Moses H. W. Chan .Microtwinning in Template-Synthesized Single-Crystal Metal Nanowires[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,2004(3):841-845.
[99] S. Bhattacharrya;S. K. Saha;D. Chakravorty .Nanowire formation in a polymeric film[J].Applied physics letters,2000(26):3896-3898.
[100] K. Chaudhari;T. K. Das;P. R. Rajmohanan;K. Lazar;S. Sivasanker;A. J. Chandwadkar .Synthesis, Characterization, and Catalytic Properties of Mesoporous Tin-Containing Analogs of MCM-41[J].Journal of Catalysis,1999(2):281-291.
[101] P.V. Adhyapak;P. Karandikar;K. Vijayamohanan .Synthesis of silver nanowires inside mesoporous MCM-41 host[J].Materials Letters,2004(7/8):1168-1171.
[102] Yiying Wu;Tsachi Livneh;You Xiang Zhang;Guosheng Cheng;Jianfang Wang;Jing Tang;Galen D.Stucky .Templated Synthesis of Highly Ordered Mesostructured Nanowires and Nanowire Arrays[J].Nano letters,2004(12):2337-2342.
[103] Jean-Yves Piquemal;Guillaume Viau;Patricia Beaunier;Francois Bozon-Verduraz;Fernand Fievet .One-step construction of silver nanowires in hexagonal mesoporous silica using the polyol process[J].Materials Research Bulletin: An International Journal Reporting Research on Crystal Growth and Materials Preparation and Characterization,2003(3):389-394.
[104] Michael H. Huang;Amer Choudrey;Peidong Yang .Ag nanowire formation within mesoporous silica[J].Chemical communications,2000(12):1063-1064.
[105] Dongyuan Zhao;Jianglin Feng;Qisheng Huo et al.Triblock copolymer syntheses of mesoporous silica with periodic 50 to 300 angstrom pores[J].Science,1998,279(5350):548.
[106] Stephen Mann.Biomimetic Materials Chemistry[M].Weinheim:John Wiley and Sons Ltd,1997:1-37.
[107] Randall M. Stoltenberg;Adam T. Woolley .DNA-Templated Nanowire Fabrication[J].Biomedical microdevices,2004(2):105-111.
[108] Erez Braun;Yoav Eichen;Uri Sivan et al.DNA-templated assembly and electrode attachment of a conducting silver wire[J].Nature,1998,391(6669):775-778.
[109] William E Ford;Oliver Harnack;Akio Yasuda et al.Platinated DNA as precursors to templated chains of metal nanoparticles[J].Advanced Materials,2001,13(23):1793-1797.
[110] Oliver Harnack;William E. Ford;Akio Yasuda;Jurina M. Wessels .Tris(hydroxymethyl)phosphine-Capped Gold Particles Templated by DNA as Nanowire Precursors[J].Nano letters,2002(9):919-923.
[111] Chirstopher F. Monson;Adam T. Woolley .DNA-Templated Construction of Copper Nanowires[J].Nano letters,2003(3):359-363.
[112] Adam T Woolley;Ryan T Kelly .Deposition and characterization of extended single-stranded DNA molecules on surfaces[J].Nano Letters,2001,1(07):345-348.
[113] Hector A.Becerril;Randall M.Stoltenberg;Christopher F.Monson;Adam T.Woolley .Ionic surface masking for low background in single- and double-stranded DNA-templated silver and copper nanorods[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2004(4):611-616.
[114] Hao Yan;Sung Ha Park;Gleb Finkelstein;John H. Reif;Thomas H. LaBean .DNA-templated self-assembly of protein arrays and highly conductive nanowires[J].Science,2003(5641):1882-1884.
[115] Park SH;Barish R;Li HY;Reif JH;Finkelstein G;Yan H;LaBean TH .Three-helix bundle DNA tiles self-assemble into 2D lattice or 1D templates for silver nanowires[J].Nano letters,2005(4):693-696.
[116] Keren K;Krueger M;Gilad R;Ben-Yoseph G;Sivan U;Braun E .Sequence-specific molecular lithography on single DNA molecules[J].Science,2002(5578):72-75.
[117] Gang Wei;Hualan Zhou;Zhiguo Liu et al.One-step synthesis of silver nanoparticles,nanorods,and nanowires on the surface of DNA network[J].Journal of Physical Chemistry B,2005,109(18):8738-8743.
[118] Furneaux R C;Rigby W R;Davidson A P .The formation of controlled porosity membranes from anodically oxidized aluminium[J].Nature,1989,337(6203):147-149.
[119] Masuda H;Fukuda K .ORDERED METAL NANOHOLE ARRAYS MADE BY A TWO-STEP REPLICATION OF HONEYCOMB STRUCTURES OF ANODIC ALUMINA[J].Science,1995(5216):1466-1468.
[120] Hideki Masuda;Kouichi Yada;Atsushi Osaka .Self-Ordering of Cell Configuration of Anodic Porous Alumina with Large-Size Pores in Phosphoric Acid Solution[J].Japanese journal of applied physics,1998(11A):L1340-L1342.
[121] Sun XY;Xu FQ;Li ZM;Zhang WH .Cyclic voltammetry for the fabrication of high dense silver nanowire arrays with the assistance of AAO template[J].Materials Chemistry and Physics,2005(1):69-72.
[122] Yu-Hung Cheng;Syh-Yuh Cheng .Nanostructures formed by Ag nanowires[J].Nanotechnology,2004(1):171-175.
[123] Rui-Long Zong;Ji Zhou;Ji Zhou .Synthesis and Optical Properties of Silver Nanowire Arrays Embedded in Anodic Alumina Membrane[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,2004(43):16713-16716.
[124] G. Sauer;G. Brehm;S. Schneider;K. Nielsch;R. B. Wehrspohn;J. Choi;H. Hofmeister;U. Gosele .Highly ordered monocrystalline silver nanowire arrays[J].Journal of Applied Physics,2002(5):3243-3247.
[125] Zhong ai Hu;Tao Xu;Ren jiang Liu .Template preparation of high-density, and large-area Ag nanowire array by acetaldehyde reduction[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2004(1/2):236-240.
[126] Malandrino G;Finocchiaro ST;Fragala IL .Silver nanowires by a sonoself-reduction template process[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2004(18):2726-2728.
[127] Qingmin Zhang;Yan Li;Dongsheng Xu et al.Preparation of silver nanowire arrays in anodic aluminum oxide templates[J].Journal of Materials Science Letters,2001,20(10):925-927.
[128] Xiuwen Zheng;Liying Zhu;Aihui Yan;Xinjun Wang;Yi Xie .Controlling synthesis of silver nanowires and dendrites in mixed surfactant solutions[J].Journal of Colloid and Interface Science,2003(2):357-361.
[129] Chang JY.;Chang JJ.;Lo B.;Tzing SH.;Ling YC. .Silver nanoparticles spontaneous organize into nanowires and nanobanners in supercritical water[J].Chemical Physics Letters,2003(3-4):261-267.
[130] Guillaume Viau;Jean-Yves Piquemal;Marta Esparrica;Diane Ung;Nassira Chakroune;Fabienne Warmont;Fernand Fievet .Formation of assembled silver nanowires by reduction of silver thiolate in polyol/toluene medium[J].Chemical communications,2003(17):2216-2217.
[131] Yujie Xiong;Yi Xie;Changzheng Wu et al.Formation of silver nanowires through a sandwiched reduction process[J].Advanced Materials,2003,15(05):405-408.
[132] Xiaqin Wang;Kensuke Naka;Hideaki Itoh;Sooyun Park;Yoshiki Chujo .Synthesis of silver dendritic nanostructures protected by tetrathiafulvalene[J].Chemical communications,2002(12):1300-1301.
[133] Wang XQ.;Itoh H.;Naka K.;Chujo Y. .Tetrathiafulvalene-assisted formation of silver dendritic nanostructures in acetonitrile[J].Langmuir: The ACS Journal of Surfaces and Colloids,2003(15):6242-6246.
[134] Jiang GH;Wang L;Chen T;Yu HJ;Wang JJ .Preparation and characterization of dendritic silver nanoparticles[J].Journal of Materials Science,2005(7):1681-1683.
[135] Xiuwen Zheng;Liying Zhu;Xinjun Wang;Aihui Yan;Yi Xie .A simple mixed surfactant route for the preparation of noble metal dendrites[J].Journal of Crystal Growth,2004(1/2):255-262.
[136] M. A. Pasquale;S. L. Marchiano;A. J. Arvia .Transitions in the growth mode of branched silver electrodeposits under isothermal and non-isothermal ionic mass transfer kinetics[J].Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry,2002(1/2):255-268.
[137] Junjie Zhu;Xuehong Liao;Hong-Yuan Chen .Electrochemical preparation of silver dendrites in the presence of DNA[J].Materials Research Bulletin: An International Journal Reporting Research on Crystal Growth and Materials Preparation and Characterization,2001(9):1687-1692.
[138] Zhu JJ.;Palchik O.;Koltypin Y.;Gedanken A.;Liu SW. .Shape-controlled synthesis of silver nanoparticles by pulse sonoelectrochemical methods[J].Langmuir: The ACS Journal of Surfaces and Colloids,2000(16):6396-6399.
[139] He R.;Qian XF.;Yin J.;Zhu ZK. .Formation of silver dendrites under microwave irradiation[J].Chemical Physics Letters,2003(3-4):454-458.
[140] Gao XL;Gu GH;Hu ZS;Guo Y;Fu X;Song JM .A simple method for preparation of silver dendrites[J].Colloids and Surfaces, A. Physicochemical and Engineering Aspects,2005(1/3):57-61.
[141] Jianping Xiao;Yi Xie;Rui Tang et al.Novel ultrasonically assisted templated synthesis of palladium and silver dendritic nanostructures[J].Advanced Materials,2001,13(24):1887-1891.
[142] Mathieu Maillard;Pinray Huang;Louis Brus .Silver Nanodisk Growth by Surface Plasmon Enhanced Photoreduction of Adsorbed [Ag~+][J].Nano letters,2003(11):1611-1615.
[143] Mathieu Maillard;Suzanne Giorgio;Marie-Paule Pileni .Tuning the Size of Silver Nanodisks with Similar Aspect Ratios: Synthesis and Optical Properties[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,2003(11):2466-2470.
[144] Mathieu Maillard;Suzanne Giorgio;Marie-Paule Pileni .Silver nanodisks[J].Advanced Materials,2002,14(15):1084-1086.
[145] Germain V;Jing Li;Ingert D et al.Stacking faults in formation of silver nanodisk[J].Journal of Physical Chemistry B,2003,107(34):8717-8720.
[146] Sihai Chen;Zhiyong Fan;David L. Carroll .Silver Nanodisks: Synthesis, Characterization, and Self-Assembly[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,2002(42):10777-10781.
[147] Sihai Chen;David L.Carroll .Silver Nanoplates:Size Control in Two Dimensions and Formation Mechanisms[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,2004(18):5500-5506.
[148] Encai Hao;K Lance Kelly;Joseph T Hupp et al.Synthesis of silver nanodisks using polystyrene mesospheres as templates[J].Journal of the American Chemical Society,2002,124(51):15182-15183.
[149] Encai Hao;George C Schatz;Joseph T Hupp .Synthesis and optical properties of anisotropic metal nanoparticle[J].Journal of Fluorescence,2004,14(04):331-341.
[150] Simakin AV.;Shafeev GA.;Brayner R.;Bozon-Verduraz F.;Voronov VV. .Nanodisks of Au and Ag produced by laser ablation in liquid environment[J].Chemical Physics Letters,2001(3-4):182-186.
[151] Germain V;Brioude A;Ingert D;Pileni MP .Silver nanodisks: Size selection via centrifugation and optical properties[J].The Journal of Chemical Physics,2005(12):4707-1-4707-8-0.
[152] 梁焕珍,金东镇,喻克宁,郑宪生,张洁,黎少华,李锐星.六方片状银粉的合成[J].粉末冶金技术,2003(04):218-223.
[153] 梁焕珍,Kim Dong-Jin,Chung Hun S,张洁,喻克宁,黎少华,李锐星.乙二醇中化学还原合成片状银粉[J].物理化学学报,2003(02):150-153.
[154] D. Wang;C. Song;Z. Hu .Synthesis of silver nanoparticles with flake-like shapes[J].Materials Letters,2005(14/15):1760-1763.
[155] Liangti Qu;Gaoquan Shi;Xufeng Xu;Bin Fan .Facile Route to Silver Nanotubes[J].Advanced Materials,2004(14):1200-1203.
[156] Michal Lahav;Tali Sehayek;Alexander Vaskevich;Israel Rubinstein .Nanoparticle Nanotubes[J].Angewandte Chemie,2003(45):5576-5579.
[157] Park JH;Oh SG;Jo BW .Fabrication of silver nanotubes using functionalized silica rod as templates[J].Materials Chemistry and Physics,2004(2/3):301-310.
[158] Yugang Sun;Younan Xia .Multiple-Walled Nanotubes Made of Metals[J].Advanced Materials,2004(3):264-268.
[159] Yugang Sun;Brian T. Mayers;Younan Xia .Template-Engaged Replacement Reaction: A One-Step Approach to the Large-Scale Synthesis of Metal Nanostructures with Hollow Interiors[J].Nano letters,2002(5):481-485.
[160] Yugang Sun;Brian Mayers;Younan Xia .Transformation of Silver Nanospheres into Nanobelts and Triangular Nanoplates through a Thermal Process[J].Nano letters,2003(5):675-679.
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