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一维锗酸盐纳米材料具有良好的光催化、传感、电学及光学特性,在纳米光催化、纳米光学、纳米电学及传感领域具有很好的应用潜力.本文综述了一维锗酸盐纳米材料的合成、性能及应用的研究现状与最新进展情况,重点讨论了利用热蒸发、水热法、化学气相沉积等方法合成锗酸盐纳米线、纳米棒与纳米带以及一维锗酸盐纳米材料在磁性器件、电化学传感器、光催化及锂离子电池方面的应用进展情况,同时指出了一维锗酸盐纳米材料的发展方向.

参考文献

[1] Simas Rackauskas;Albert G Nasibulin;Hua Jiang;Ying Tian;Victor I Kleshch;Jani Sainio;Elena D Obraztsova;Sofia N Bokova;Alexander N Obraztsov;Esko I Kauppinen .A novel method for metal oxide nanowire synthesis[J].Nanotechnology,2009(16):165603-8.
[2] Li, J;Kong, AG;Wang, WJ;Zhao, XH;Yang, F;Shan, YK .In-situ oxidation of block copolymer for producing copper oxalate or copper oxide nanowires in mesoporous channels[J].Journal of Solid State Chemistry,2009(10):2801-2805.
[3] Lin LW;Tang YH;Pei LZ;Zhu LB;Zhang Y;Guo C .Smooth silicon oxide nanowires under supercritically hydrothermal conditions[J].Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites,2007(26):159-163.
[4] KIM S S;GABRIEL N T;SONG W B et al.Encapsulation of low refractive index SiO2 nanorods by A12O3 with atomic layer deposition[J].Optical Express,2007,15(24):16285-16291.
[5] FAN X;MENG X M;ZHANG X H et al.Template fabrication of SiO2 nanotubes[J].Applied Physics Letters,2007,90(1 0):103114.
[6] Yong Su;Xuemei Liang;Sen Li;Yiqing Chen;Qingtao Zhou;Song Yin;Xia Meng;Mingguang Kong .Self-catalytic VLS growth and optical properties of single-crystalline GeO_2 nanowire arrays[J].Materials Letters,2008(6/7):1010-1013.
[7] JIANG Z;XIE T;WANG G Z et al.GeOa nanotubes and nanorods synthesized by vapor phase reactions[J].Materials Letters,2005,59(04):416-419.
[8] Wang YW.;Zhang LD.;Wang GZ.;Peng XS.;Chu ZQ.;Liang CH. .Catalytic growth of semiconducting zinc oxide nanowires and their photoluminescence properties[J].Journal of Crystal Growth,2002(1):171-175.
[9] Y.J. Gao;W.C. Zhang;X.L. Wu;Y. Xia;G.S. Huang;L.L. Xu;J.C. Shen;G.G. Siu;Paul K. Chu .Hydrothermal Self-assembling Of Zno Nanorods Into Sphere-like Superstructures And Their Optical Characteristics[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2008(5P1):1982-1987.
[10] Samuel L. Mensah;Vijaya K. Kayastha;Ilia N. Ivanov;David B. Geohegan;Yoke Khin Yap .Formation of single crystalline ZnO nanotubes without catalysts and templates[J].Applied physics letters,2007(11):113108-1-113108-3-0.
[11] Zhang, F;Bel, FL;Cao, JM;Wang, X .The preparation of CdO nanowires from solid-state transformation of a layered metal-organic framework[J].Journal of Solid State Chemistry,2008(1):143-149.
[12] YAN C Y;LEE P S .Synthesis and structure characterization of ternary Zn2GeO4 nanowires by chemical vapour transport[J].Journal of Physics and Chemistry C,2009,113(32):14135-14139.
[13] YAN C Y;SEE L P.Synthesis of one-dimensional (1D) Gobased ternary oxide nanostructures[A].Hong Kong,China:IEEE Press,2010:408-409.
[14] HUANG J H;WANG X C;HOU Y D et al.Degradation of benzene over a zinc germanate photocatalyst under ambiem conditions[J].Environmental Science and Technology,2008,42(19):7387-7391.
[15] Tsai MY;Yu CY;Wang CC;Perng TP .Water-driven formation of luminescent Zn2GeO4 nanorods from Zn-containing Ge nanoparticles[J].Crystal growth & design,2008(7):2264-2269.
[16] PEI L Z;ZHAO H S;TAN W et al.Low temperature growth and characterizations of single crystalline CuGeO3 nanowires[J].Cryst EngComm,2009,11(08):1696-1701.
[17] Rui-Qi Song;An-Wu Xu;Shu-Hong Yu .Layered Copper Metagermanate Nanobelts: Hydrothermal Synthesis, Structure, and Magnetic Properties[J].Journal of the American Chemical Society,2007(14):4152-4153.
[18] 裴立宅;赵海生 .锗酸铜纳米线及其制备方法[P].中国专利:ZL200810235763.9,2011-11-09.
[19] L.Z. Pei;H.S. Zhao;W. Tan .A simple route to the synthesis of single crystalline copper metagermanate nanowires[J].Materials Characterization,2009(12):1602-1606.
[20] D. K. Li;L. Z. Pei;Y. Yang;L. J. Yang .Controlled Growth of Copper Germanate Nanoflowers[J].Journal of Advanced Microscopy Research,2011(2):97-103.
[21] Pei, L.Z.;Wang, J.F.;Yang, L.J.;Dong, Y.P.;Wang, S.B.;Fan, C.G.;Hu, J.L.;Zhang, Q.F. .Preparation of copper germanate nanowires with good electrochemical sensing properties[J].Crystal Research and Technology: Journal of Experimental and Industrial Crystallography,2011(1):103-112.
[22] 杨连金 .锗酸铜纳米线的合成及在电化学传感中的应用[D].马鞍山:安徽工业大学,2011.
[23] PEILZ;YANG LJ;YANG Y et al.Large scab synthesis and growth conditions dependence on the formation of CuGeO3 nanowires[J].Materials Chemistry and Physics,2011,130(1-2):104-112.
[24] PEI L Z;YANG Y;YANG L J et al.Low temperature synthesis of CuGeO3 nanoflowers from n-hepane solution[J].Inter national Journal of Materials Research,2011,102(11):1391-1396.
[25] Yan, CY;Singh, N;Lee, PS .Morphology Control of Indium Germanate Nanowires, Nanoribbons, and Hierarchical Nanostructures[J].Crystal growth & design,2009(8):3697-3701.
[26] Su Y;Meng X;Li S;Chen YQ;Xu L;Zhou QT;Yin S;Peng B;Liang XM;Feng Y .Synthesis of chainlike In2Ge2O7/amorphous GeO2 Core/Shell nanocables and their luminescence[J].Journal of nanoscience and nanotechnology,2007(12):4365-4368.
[27] Ling Li;Yong Su;Yiqing Chen;Mi Gao;Qiong Chen;Yi Feng .Synthesis and Photoluminescence Properties of Hierarchical Zinc Germanate Nanostructures[J].Advanced Science Letters,2010(1):1-5.
[28] TSAI M Y;YU C Y;PERNG T P .Synthesis and photolumi nescence of amorphous Ca5Ge2O9 nanowires[J].Journal of Nanoscience and Nanotechnology,2008,8(12):6376-6380.
[29] PEI L Z;YANG Y;FAN C G et al.Synthesis and character izations of calcium germanate nanowires[J].Cryst Eng Comm,2011,13(14):4658-4665.
[30] PEI L Z;PEI Y Q;YANG Y et al.Ca2Ge7O16 nanowires grown from CaO and GeO2[J].Materials Research,2012,15(01):90-96.
[31] TSAI M Y;PERNG T P.Synthesis and photoluminescence of amorphous strontium germanate nanowires[A].Honolulu,HI,USA:The Electrochemical Society,2008:12-17.
[32] Ning Wang;Jie Ding;Guicun Li;Hongrui Peng .Synthesis and properties of PbGeO3 nanostructures[J].Crystal Research and Technology: Journal of Experimental and Industrial Crystallography,2010(3):316-320.
[33] Pei, L.Z.;Yang, Y.;Pei, Y.Q.;Yuan, C.Z.;Duan, T.K.;Zhang, Q.-F. .Cd_2Ge_2O_6 nanowires grown by a simple hydrothermal route[J].Crystal Research and Technology: Journal of Experimental and Industrial Crystallography,2011(5):480-484.
[34] L.Z. Pei;Y. Yang;Y.Q. Pei .Synthesis and microstructural control of flower-like cadmium germanate[J].Materials Characterization,2011(11):1029-1035.
[35] Boppana, V.B.R.;Hould, N.D.;Lobo, R.F. .Synthesis, characterization and photocatalytic properties of novel zinc germanate nano-materials[J].Journal of Solid State Chemistry,2011(5):1054-1062.
[36] YAN S C;WAN L J;LI Z S et al.Facile temperature-controlled synthesis of hexagonal Zn2GcO4 nanorods with different aspect ratios toward improved photocatalytic activity for overall water splitting and photoreduction of CO2[J].Chemistry Communications,2011,47(19):5632-5634.
[37] L. Z. Pei;J. F. Wang;W. Tan;H. Y. Yu;C. G. Fan;J. Chen;Qian-Feng Zhang .A Convenient Synthesis Route to the Zinc Metagermanate Nanorods[J].Current Nanoscience,2009(4):470-473.
[38] ZHANG L;CAO X F;MAY L et al.Microwave-assisted preparation and photocatalytic properties of Zn2GeO4 nanorod bundles[J].Cryst Eng Comm,2010,12(10):3201-3206.
[39] Pei, L.Z.;Yang, Y.;Yang, L.J.;Fan, C.G.;Yuan, C.Z.;Zhang, Q.-F. .Large-scale synthesis and the roles of growth conditions on the formation of Zn_2GeO_4 nanorods[J].Solid State Communications,2011(14/15):1036-1041.
[40] Huang, JH;Ding, KN;Wang, XC;Fu, XZ .Nanostructuring Cadmium Germanate Catalysts for Photocatalytic Oxidation of Benzene at Ambient Conditions[J].Langmuir: The ACS Journal of Surfaces and Colloids,2009(14):8313-8319.
[41] ZHANG L;CAO X F;CHEN X T et al.Fast preparation and growth mechanism of erythrocyte like Cd2Ge2O6 superstructures via a microwave-hydrothermal process[J].Cryst Eng Comm,2011,13(07):2464-2471.
[42] L.Z. Pei;Y. Yang;C.Z. Yuan .A simple route to synthesize manganese germanate nanorods[J].Materials Characterization,2011(6):555-562.
[43] Su Y;Li S;Xu L;Chen YQ;Zhou QT;Peng B;Yin S;Meng X;Liang XM;Feng Y .Synthesis and photoluminescence properties of In2Ge2O7 nanobelts[J].Nanotechnology,2006(24):6007-6010.
[44] Christian Atsriku;Christopher C. Benz;Gary K. Scott;Bradford W. Gibson;Michael A. Baldwin .Quantification of Cysteine Oxidation in Human Estrogen Receptor by Mass Spectrometry[J].Analytical chemistry,2007(8):3083-3090.
[45] Mario Thevis;Rachel R. Ogorzalek Loo;Joseph A. Loo .In-Gel Derivatization of Proteins for Cysteine-Specific Cleavages and their Analysis by Mass Spectrometry[J].Journal of proteome research,2003(2):163-172.
[46] Ballin NZ .Estimation of whey protein in casein coprecipitate and milk powder by high-performance liquid chromatography quantification of cysteine[J].Journal of Agricultural and Food Chemistry,2006(12):4131-4135.
[47] YongPing Dong;LiZhai Pei;XiangFeng Chu;WangBing Zhang;QianFeng Zhang .Electrochemical behavior of cysteine at a CuGeO_3 nanowires modified glassy carbon electrode[J].Electrochimica Acta,2010(18):5135-5141.
[48] Lan, Qing;Zhang, Luoping;Li, Guilan;Vermeulen, Roel;Weinberg, Rona .Hematotoxicity in Workers Exposed to Low Levels of Benzene[J].Science,2004(5702):1774-1776.
[49] Liu, Q.;Zhou, Y.;Kou, J.;Chen, X.;Tian, Z.;Gao, J.;Yan, S.;Zou, Z. .High-yield synthesis of ultralong and ultrathin Zn_2GeO _4 nanoribbons toward improved photocatalytic reduction of CO _2 into renewable hydrocarbon fuel[J].Journal of the American Chemical Society,2010(41):14385-14387.
[50] Feng, J.K.;Lai, M.O.;Lu, L. .Zn_2GeO_4 Nanorods synthesized by low-temperature hydrothermal growth for high-capacity anode of lithium battery[J].Electrochemistry communications,2011(3):287-289.
[51] JinKui Feng;Man On Lai;Li Lu .Lithium storage capability of CuGeO_3 nanorods[J].Materials Research Bulletin: An International Journal Reporting Research on Crystal Growth and Materials Preparation and Characterization,2012(7):1693-1696.
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