电化学生物传感器是一种高效、准确检测物质浓度的一种手段,在过氧化氢、尿酸、葡萄糖、胆固醇、硝酸盐以及DNA等物质的检测中取得了丰硕的科研成果.采用一维纳米阵列为基体构筑电化学生物传感器可以改善其综合性能,获得良好的可重复性、较高的灵敏度、较低的检测极限等.本文综述了在过去五年时间内一维纳米阵列的主要合成方法,回顾和总结了近年来基于一维纳米阵列的各种电化学生物传感器的研究进展.
参考文献
[1] | Niina J. Ronkainen;H. Brian Halsall;William R. Heineman .Electrochemical biosensors[J].Chemical Society Reviews,2010(5):1747-1763. |
[2] | Wang XJ;Dzyadevych SV;Chovelon JM;Renault NJ;Ling C;Xia SQ;Zhao JF .Conductometric nitrate biosensor based on methyl viologen/Nafion (R)/nitrate reductase interdigitated electrodes[J].Talanta: The International Journal of Pure and Applied Analytical Chemistry,2006(2):450-455. |
[3] | Ankan Dutta Chowdhury;Rupali Gangopadhyay;Amitabha De.Highly sensitive electrochemical biosensor for glucose, DNA and protein using gold-polyaniline nanocomposites as a common matrix[J].Sensors and Actuators, B. Chemical,2014:348-356. |
[4] | Zhang, G.;Yang, N.;Ni, Y.;Shen, J.;Zhao, W.;Huang, X. .A H_2O_2 electrochemical biosensor based on biocompatible PNIPAM-g-P (NIPAM-co-St) nanoparticles and multi-walled carbon nanotubes modified glass carbon electrode[J].Sensors and Actuators, B. Chemical,2011(1):130-137. |
[5] | Haiyan Song;Yongnian Ni;Serge Kokot.A novel electrochemical biosensor based on the hemin-graphene nano-sheets and gold nano-particles hybrid film for the analysis of hydrogen peroxide[J].Analytica chimica acta,2013:24-31. |
[6] | Arora, K.;Tomar, M.;Gupta, V. .Highly sensitive and selective uric acid biosensor based on RF sputtered NiO thin film[J].Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices,2011(1):333-336. |
[7] | Nicolas Plumere;Jorg Henig;Wilbur H. Campbell .Enzyme-Catalyzed O_(2) Removal System for Electrochemical Analysis under Ambient Air: Application in an Amperometric Nitrate Biosensor[J].Analytical chemistry,2012(5):2141-2146. |
[8] | Jan Lankelma;Zhihong Nie;Emanuel Carrilho;George M. Whitesides .Paper-Based Analytical Device for Electrochemical Flow-Injection Analysis of Glucose in Urine[J].Analytical chemistry,2012(9):4147-4152. |
[9] | Yuehe Lin;Fang Lu;Yi Tu;Zhifeng Ren .Glucose Biosensors Based on Carbon Nanotube Nanoelectrode Ensembles[J].Nano letters,2004(2):191-195. |
[10] | Lei, Y.;Yan, X.;Zhao, J.;Liu, X.;Song, Y.;Luo, N.;Zhang, Y. .Improved glucose electrochemical biosensor by appropriate immobilization of nano-ZnO[J].Colloids and Surfaces, B. Biointerfaces,2011(1):168-172. |
[11] | Zhu, L.;Luo, L.;Wang, Z..DNA electrochemical biosensor based on thionine-graphene nanocomposite[J].Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices,2012:507-511. |
[12] | Sheng Xu;Chen Xu;Ying Liu;Youfan Hu;Rusen Yang;Qing Yang;Jae-Hyun Ryou;Hee Jin Kim;Zachary Lochner;Suk Choi;Russell Dupuis;Zhong Lin Wang .Ordered Nanowire Array Blue/Near-UV Light Emitting Diodes[J].Advanced Materials,2010(42):4749-4753. |
[13] | Pan, C.;Dong, L.;Zhu, G.;Niu, S.;Yu, R.;Yang, Q.;Liu, Y.;Wang, Z.L. .High-resolution electroluminescent imaging of pressure distribution using a piezoelectric nanowire LED array[J].Nature photonics,2013(9):752-758. |
[14] | Ren Li;Peng Zhang;Yimin Huang .Facile Approach to Prepare Pd Nanoarray Catalysts within Porous Alumina Templates on Macroscopic Scales[J].ACS applied materials & interfaces,2013(23):12695-12700. |
[15] | J.B. Wu;Z.G. Li;X.H. Huang;Y. Lin .Porous Co_3O_4/NiO core/shell nanowire array with enhanced catalytic activity for methanol electro-oxidation[J].Journal of Power Sources,2013(Feb.15):1-5. |
[16] | Jan M. Macak;Martin Zlamal;Josef Krysa;Patrik Schmuki .Self-Organized TiO_2 Nanotube Layers as Highly Efficient Photocatalysts[J].Small,2007(2):300-304. |
[17] | Jesper Wallentin;Nicklas Anttu;Damir Asoli;Maria Huffman;Ingvar Aberg;Martin H. Magnusson;Gerald Siefer;Peter Fuss-Kailuweit;Frank Dimroth;Bernd Witzigmann;H. Q. Xu;Lars Samuelson;Knut Deppert;Magnus T. Borgstroem .InP Nanowire Array Solar Cells Achieving 13.8% Efficiency by Exceeding the Ray Optics Limit[J].Science,2013(Mar.1 TN.6123):1057-1060. |
[18] | Bing-Xin Lei;Jin-Yun Liao;Ran Zhang .Ordered Crystalline TiO2 Nanotube Arrays on Transparent FTO Glass for Efficient Dye-Sensitized Solar Cells[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2010(35):15228-15233. |
[19] | Shuaishuai Ma;Rong Li;Changpeng Lv;Wei Xu;Xinglong Gou .Facile synthesis of ZnO nanorod arrays and hierarchical nanostructures for photocatalysis and gas sensor applications[J].Journal of hazardous materials,2011(2):730-740. |
[20] | Yi, J.;Lee, J.M.;Park, W.I. .Vertically aligned ZnO nanorods and graphene hybrid architectures for high-sensitive flexible gas sensors[J].Sensors and Actuators, B. Chemical,2011(1):264-269. |
[21] | Liu JP;Guo CX;Li CM;Li YY;Chi QB;Huang XT;Liao L;Yu T .Carbon-decorated ZnO nanowire array: A novel platform for direct electrochemistry of enzymes and biosensing applications[J].Electrochemistry communications,2009(1):202-205. |
[22] | Yunli Wang;Yingchun Zhu;Jingjing Chen .Amperometric biosensor based on 3D ordered freestanding porous Pt nanowire array electrode[J].Nanoscale,2012(19):6025-6031. |
[23] | Rafiq Ahmad;Nirmalya Tripathy;Jin Hwan Kim;Yoon-Bong Hahn.Highly selective wide linear-range detecting glucose biosensors based on aspect-ratio controlled ZnO nanorods directly grown on electrodes[J].Sensors and Actuators, B. Chemical,2012:195-201. |
[24] | X.Y.Zhang;L.D.Zhang;G.W.Meng;M.J.Zheng;L.X.Zhao;W.Chen;F.Philipp .Electrochemical Fabrication of Highly Ordered Semiconductor and Metallic Nanowire Arrays[J].Chemistry of Materials,2001(8):2511-2515. |
[25] | Sahar Sadat Mahshid;Sara Mahshid;Abolghasem Dolati;Mohammad Ghorbani;Lixia Yang;Shenglian Luo;Qingyun Cai.Template-based electrodeposition of Pt/Ni nanowires and its catalytic activity towards glucose oxidation[J].Electrochimica Acta,2011:551-555. |
[26] | Germano Ferrara;Libero Damen;Catia Arbizzani;Rosalinda Inguanta;Salvatore Piazza;Carmelo Sunseri;Marina Mastragostino .SnCo nanowire array as negative electrode for lithium-ion batteries[J].Journal of Power Sources,2011(3):1469-1473. |
[27] | Wang Y;Takahashi K;Shang HM;Cao GZ .Synthesis and electrochemical properties of vanadium pentoxide nanotube arrays[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,2005(8):3085-3088. |
[28] | Zi-Long Wang;Xu-Jun He;Sheng-Hua Ye .Design of Polypyrrole/Polyaniline Double-Walled Nanotube Arrays for Electrochemical Energy Storage[J].ACS applied materials & interfaces,2014(1):642-647. |
[29] | Wang, D.;Zhang, L.;Lee, W.;Knez, M.;Liu, L. .Novel three-dimensional nanoporous alumina as a template for hierarchical TiO_2 nanotube arrays[J].Small,2013(7):1025-1029. |
[30] | One-step fabrication of ordered Pt-Cu alloy nanotube arrays for ethanol electrooxidation[J].Materials Letters,2010(10):p.1169. |
[31] | Shi, L.;Pei, C.;Xu, Y.;Li, Q. .Template-directed synthesis of ordered single-crystalline nanowires arrays of Cu_2ZnSnS_4 and Cu_2ZnSnSe_4[J].Journal of the American Chemical Society,2011(27):10328-10331. |
[32] | Gao, W.;Sattayasamitsathit, S.;Orozco, J.;Wang, J. .Highly efficient catalytic microengines: Template electrosynthesis of polyaniline/platinum microtubes[J].Journal of the American Chemical Society,2011(31):11862-11864. |
[33] | Guomin Hua;Li Sun;Yue Tian;Xiaomeng Chen;Lide Zhang;Jun Dai;Linhua Hu;Songyuan Dai .A Facile Chemical Route to Synthesize ZnO Nanoarrays: One-Dimensional Nanowire Arrays and Two-Dimensional Porous Nanosheet Arrays[J].Journal of nanoscience and nanotechnology,2011(4):3488-3492. |
[34] | Elena Guillen;Eneko Azaceta;Laurence M. Peter;Arnost Zukal;Ramon Tena-Zaera;Juan A. Anta .ZnO solar cells with an indoline sensitizer: a comparison between nanoparticulate films and electrodeposited nanowire arrays[J].Energy & environmental science: EES,2011(9):3400-3407. |
[35] | Jianhang Qiu;Min Guo;Xidong Wang .Electrodeposition of Hierarchical ZnO Nanorod-Nanosheet Structures and Their Applications in Dye-Sensitized Solar Cells[J].ACS applied materials & interfaces,2011(7):2358-2367. |
[36] | Jehl, Z.;Rousset, J.;Donsanti, F.;Renou, G.;Naghavi, N.;Lincot, D. .Electrodeposition of ZnO nanorod arrays on ZnO substrate with tunable orientation and optical properties[J].Nanotechnology,2010(39):1-6. |
[37] | Haibin Tang;Guowen Meng;Qing Huang;Zhuo Zhang;Zhulin Huang;Chuhong Zhu .Arrays of Cone-Shaped ZnO Nanorods Decorated with Ag Nanoparticles as 3D Surface-Enhanced Raman Scattering Substrates for Rapid Detection of Trace Polychlorinated Biphenyls[J].Advanced functional materials,2012(1):218-224. |
[38] | J. K. Liang;H. L. Su;C. L. Kuo;S. P. Kao;J. W. Cui;Y. C. Wu;J. C. A. Huang.Structural, Optical and Electrical Properties of Electrodeposited Sb-Doped ZnO Nanorod Arrays[J].Electrochimica Acta,2014:124-132. |
[39] | Zengfang Feng;Qiaobao Zhang;Lingling Lin .<0001>-Preferential Growth of CdSe Nanowires on Conducting Glass: Template-Free Electrodeposition and Application in Photovoltaics[J].Chemistry of Materials: A Publication of the American Chemistry Society,2010(9):2705-2710. |
[40] | Hsieh, YT;Leong, TI;Huang, CC;Yeh, CS;Sun, IW .Direct template-free electrochemical growth of hexagonal CuSn tubes from an ionic liquDE[J].Chemical communications,2010(3):484-486. |
[41] | Saadat, S.;Zhu, J.;Shahjamali, M.M.;Maleksaeedi, S.;Tay, Y.Y.;Tay, B.Y.;Hng, H.H.;Ma, J.;Yan, Q. .Template free electrochemical deposition of ZnSb nanotubes for Li ion battery anodes[J].Chemical communications,2011(35):9849-9851. |
[42] | Szymczak, J.;Legeai, S.;Diliberto, S.;Migot, S.;Stein, N.;Boulanger, C.;Chatel, G.;Draye, M..Template-free electrodeposition of tellurium nanostructures in a room-temperature ionic liquid[J].Electrochemistry communications,2012:57-60. |
[43] | Debiemme-Chouvy C .Template-free one-step electrochemical formation of polypyrrole nanowire array[J].Electrochemistry communications,2009(2):298-301. |
[44] | Wang, J.;Han, Y.;Feng, M.;Chen, J.;Li, X.;Zhang, S. .Preparation and photoelectrochemical characterization of WO _3/TiO_2 nanotube array electrode[J].Journal of Materials Science,2011(2):416-421. |
[45] | Xiaofeng Qiu;Jane Y. Howe;Harry M. Meyer III;Enis Tuncer;M. Parans Paranthaman .Thermal stability of HfO_2 nanotube arrays[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2011(9):4075-4081. |
[46] | Lu, X.;Wang, G.;Zhai, T.;Yu, M.;Gan, J.;Tong, Y.;Li, Y. .Hydrogenated TiO _2 nanotube arrays for supercapacitors[J].Nano letters,2012(3):1690-1696. |
[47] | Haidong Bian;Xia Shu;Jianfang Zhang;Bao Yuan;Yan Wang;Lingjuan Liu;Guangqing Xu;Zhong Chen;Yucheng Wu .Uniformly Dispersed and Controllable Ligand-Free Silver-Nanoparticle-Decorated TiO_2 Nanotube Arrays with Enhanced Photoelectrochemical Behaviors[J].Chemistry, an Asian journal,2013(11):2746-2754. |
[48] | Jiaguo Yu;Gaopeng Dai;Bei Cheng .Effect of Crystallization Methods on Morphology and Photocatalytic Activity of Anodized TiO2 Nanotube Array Films[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2010(45):19378-19385. |
[49] | Haidong Bian;Yan Wang;Bao Yuan .Flow-through TiO2 nanotube arrays: a modified support with homogeneous distribution of Ag nanoparticles and their photocatalytic activities[J].New Journal of Chemistry,2013(3):752-760. |
[50] | Yang, M.;Yang, G.;Spiecker, E.;Lee, K.;Schmuki, P. .Ordered "superlattice" TiO_2/Nb_2O _5 nanotube arrays with improved ion insertion stability[J].Chemical communications,2013(5):460-462. |
[51] | Shi, J.;Wang, X. .Growth of rutile titanium dioxide nanowires by pulsed chemical vapor deposition[J].Crystal growth & design,2011(4):949-954. |
[52] | Zhao, Q.;Wen, G.;Liu, Z.;Fan, Y.;Zou, G.;Li, L.;Zheng, R.;Ringer, S.P.;Mao, H.-K. .Synthesis of dense, single-crystalline CrO_2 nanowire arrays using AAO template-assisted chemical vapor deposition[J].Nanotechnology,2011(12):125603-1-125603-6. |
[53] | Chiu, Y.-C.;Chen, B.-H.;Jan, D.-J.;Tang, S.-J.;Chiu, K.-C. .Growth behavior of CuPc films by physical vapor deposition[J].Crystal Research and Technology: Journal of Experimental and Industrial Crystallography,2011(3):295-299. |
[54] | Bekermann, D;Gasparotto, A;Barreca, D;Bovo, L;Devi, A;Fischer, RA;Lebedev, OI;Maccato, C;Tondello, E;Van Tendeloo, G .Highly Oriented ZnO Nanorod Arrays by a Novel Plasma Chemical Vapor Deposition Process[J].Crystal growth & design,2010(4):2011-2018. |
[55] | Limiao Chen;Linbao Luo;Zhenhua Chen .ZnO/Au Composite Nanoarrays As Substrates for Surface-Enhanced Raman Scattering Detection[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2010(1):93-100. |
[56] | XiaoBing Tang;ShaoMin Zhou;XianYou Yuan .High-performance GaN/Cu_2O nanowires heterojunction synthesized by physical vapor deposition[J].Materials Letters,2013(Feb.15):25-27. |
[57] | Yuqing Song;Shanshan Qin;Yangwei Zhang .Large-Scale Porous Hematite Nanorod Arrays: Direct Growth on Titanium Foil and Reversible Lithium Storage[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2010(49):21158-21164. |
[58] | Jin-Yun Liao;Bing-Xin Lei;Hong-Yan Chen;Dai-Bin Kuang;Cheng-Yong Su .Oriented hierarchical single crystalline anatase TiO_2 nanowire arrays on Ti-foil substrate for efficient flexible dye-sensitized solar cells[J].Energy & environmental science: EES,2012(2):5750-5757. |
[59] | Qiuliu Huang;Gang Zhou;Liang Fang;Lipeng Hu;Zhong-Sheng Wang .TiO_2 nanorod arrays grown from a mixed acid medium for efficient dye-sensitized solar cells[J].Energy & environmental science: EES,2011(6):2145-2151. |
[60] | Panpan Sun;Xintong Zhang;Xueping Liu .Growth of single-crystalline rutile TiO2 nanowire array on titanate nanosheet film for dye-sensitized solar cells[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2012(13):6389-6393. |
[61] | Hwang, Y.J.;Hahn, C.;Liu, B.;Yang, P. .Photoelectrochemical properties of TiO _2 nanowire arrays: A study of the dependence on length and atomic layer deposition coating[J].ACS nano,2012(6):5060-5069. |
[62] | Jing Tang;Yongcheng Wang;Jun Li .Sensitive enzymatic glucose detection by TiO2 nanowire photoelectrochemical biosensors[J].Journal of Materials Chemistry, A. Materials for energy and sustainability,2014(17):6153-6157. |
[63] | Shih-Wei Chen;Jenn-Ming Wu .Nucleation mechanisms and their influences on characteristics of ZnO nanorod arrays prepared by a hydrothermal method[J].Acta materialia,2011(2):841-847. |
[64] | Yinglei Tao;Ming Fu;Ailun Zhao .The effect of seed layer on morphology of ZnO nanorod arrays grown by hydrothermal method[J].Journal of Alloys and Compounds,2010(1):99-102. |
[65] | Jun Zhang;Jiang-ping Tu;Xin-hui Xia .Hydrothermally synthesized WO3 nanowire arrays with highly improved electrochromic performance[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2011(14):5492-5498. |
[66] | 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. |
[67] | Bingkun Liu;Dejun Wang;Lingling Wang;Yanjun Sun;Yanhong Lin;Xueqiang Zhang;Tengfeng Xie.Glutathione-assisted hydrothermal synthesis of CdS-decorated TiO_2 nanorod arrays for quantum dot-sensitized solar cells[J].Electrochimica Acta,2013:661-667. |
[68] | Gao, P.;Wang, L.;Wang, Y.;Chen, Y.;Wang, X.;Zhang, G. .One-pot hydrothermal synthesis of heterostructured ZnO/ZnS nanorod arrays with high ethanol-sensing properties[J].Chemistry: A European journal,2012(15):4681-4686. |
[69] | Minmin Zhou;Shancheng Yan;Yi Shi;Meng Yang;Huabin Sun;Jianyu Wang;Yao Yin;Fan Gao .Surface-roughness-assisted formation of large-scale vertically aligned CdS nanorod arrays via solvothermal method[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2013(May 15):89-93. |
[70] | Zhen Wei;Ruoshi Li;Tao Huang;Aishui Yu .Fabrication of morphology controllable rutile TiO_2 nanowire arrays by solvothermal route for dye-sensitized solar cells[J].Electrochimica Acta,2011(22):7696-7702. |
[71] | Lim, M.A.;Kim, D.H.;Park, C.-O.;Lee, Y.W.;Han, S.W.;Li, Z.;Williams, R.S.;Park, I. .A new route toward ultrasensitive, flexible chemical sensors: Metal nanotubes by wet-chemical synthesis along sacrificial nanowire templates[J].ACS nano,2012(1):598-608. |
[72] | Ding, L.-X.;Li, G.-R.;Wang, Z.-L.;Liu, Z.-Q.;Liu, H.;Tong, Y.-X. .Porous Ni@Pt core-shell nanotube array electrocatalyst with high activity and stability for methanol oxidation[J].Chemistry: A European journal,2012(27):8386-8391. |
[73] | Weiqian Zeng;Feipeng Zheng;Ruizhi Li .Template synthesis of SnO2/α-Fe2O3 nanotube array for 3D lithium ion battery anode with large areal capacity[J].Nanoscale,2012(8):2760-2765. |
[74] | Jiewu Cui;Samuel B. Adeloju;Yucheng Wu.Integration of a highly ordered gold nanowires array with glucose oxidase for ultra-sensitive glucose detection[J].Analytica chimica acta,2014:134-140. |
[75] | Fabian Grote;Ruben-Simon Kuhnel;Andrea Balducci;Yong Lei .Template assisted fabrication of free-standing MnO_2 nanotube and nanowire arrays and their application in supercapacitors[J].Applied physics letters,2014(5):053904-1-053904-4. |
[76] | Xia, X.;Tu, J.;Zhang, Y.;Wang, X.;Gu, C.;Zhao, X.-B.;Fan, H.J. .High-quality metal oxide core/shell nanowire arrays on conductive substrates for electrochemical energy storage[J].ACS nano,2012(6):5531-5538. |
[77] | Xu, J;Shang, FJ;Luong, JHT;Razeeb, KM;Glennon, JD .Direct electrochemistry of horseradish peroxidase immobilized on a monolayer modified nanowire array electrode[J].Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices,2010(6):1313-1318. |
[78] | Qian Li;Kui Cheng;Wenjian Weng .Titanium dioxide nanorod-based amperometric sensor for highly sensitive enzymatic detection of hydrogen peroxide[J].Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis,2013(15/16):1487-1493. |
[79] | Kafi AKM;Wu G;Chen A .A novel hydrogen peroxide biosensor based on the immobilization of horseradish peroxidase onto Au-modified titanium dioxide nanotube arrays[J].Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices,2008(4):566-571. |
[80] | Yunhuai Zhang;Peng Xiao;Xiaoyuan Zhou .Carbon monoxide annealed TiO2 nanotube array electrodes for efficient biosensor applications[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2009(7):948-953. |
[81] | Ali, SMU;Nur, O;Willander, M;Danielsson, B .A fast and sensitive potentiometric glucose microsensor based on glucose oxidase coated ZnO nanowires grown on a thin silver wire[J].Sensors and Actuators, B. Chemical,2010(2):869-874. |
[82] | Debabrata Pradhan;Farnaz Niroui;K. T. Leung .High-Performance, Flexible Enzymatic Glucose Biosensor Based on ZnO Nanowires Supported on a Gold-Coated Polyester Substrate[J].ACS applied materials & interfaces,2010(8):2409-2412. |
[83] | Ji Yeong Kim;So-Yeon Jo;Gun-Joo Sun;Akash Katoch;Sun-Woo Choi;Sang Sub Kim.Tailoring the surface area of ZnO nanorods for improved performance in glucose sensors[J].Sensors and Actuators, B. Chemical,2014:216-220. |
[84] | Kun Yang;Guang-Wei She;Hui Wang .ZnO Nanotube Arrays as Biosensors for Glucose[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2009(47):20169-20172. |
[85] | Liu, XW;Hu, QY;Wu, Q;Zhang, W;Fang, Z;Xie, QB .Aligned ZnO nanorods: A useful film to fabricate amperometric glucose biosensor[J].Colloids and Surfaces, B. Biointerfaces,2009(1):154-158. |
[86] | Wei Wang;Yibing Xie;Yong Wang .Glucose biosensor based on glucose oxidase immobilized on unhybridized titanium dioxide nanotube arrays[J].Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis,2014(3/4):381-387. |
[87] | Chunxiao Feng;Guangqing Xu;Jun Lv .Comparison of Photoelectrochemical and Electrochemical Properties of TiO_2 Nanotube Arrays Crystallized by Hydrothermal and Annealing Methods[J].Journal of the Electrochemical Society,2013(10):H727-H732. |
[88] | Chunxiao Feng;Guangqing Xu;Haipeng Liu .Facile Fabrication of Pt/Graphene/TiO_2 NTAs Based Enzyme Sensor for Glucose Detection[J].Journal of the Electrochemical Society,2014(1):B1-B8. |
[89] | Zhang, XY;Li, D;Bourgeois, L;Wang, HT;Webley, PA .Direct Electrodeposition of Porous Gold Nanowire Arrays for Biosensing Applications[J].CHEMPHYSCHEM,2009(2):436-441. |
[90] | Liu JP;Guo CX;Li CM;Li YY;Chi QB;Huang XT;Liao L;Yu T .Carbon-decorated ZnO nanowire array: A novel platform for direct electrochemistry of enzymes and biosensing applications[J].Electrochemistry communications,2009(1):202-205. |
[91] | Yang, C.;Xu, C.;Wang, X. .ZnO/Cu nanocomposite: A platform for direct electrochemistry of enzymes and biosensing applications[J].Langmuir: The ACS Journal of Surfaces and Colloids,2012(9):4580-4585. |
[92] | Safavi, A.;Farjami, F. .Electrodeposition of gold-platinum alloy nanoparticles on ionic liquid-chitosan composite film and its application in fabricating an amperometric cholesterol biosensor[J].Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices,2011(5):2547-2552. |
[93] | Ramendra Sundar Dey;C. Retna Raj .Development of an Amperometric Cholesterol Biosensor Based on Graphene-Pt Nanoparticle Hybrid Material[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2010(49):21427-21433. |
[94] | Shurui Cao;Lei Zhang;Yaqin Chai;Ruo Yuan.Electrochemistry of cholesterol biosensor based on a novel Pt-Pd bimetallic nanoparticle decorated graphene catalyst[J].Talanta: The International Journal of Pure and Applied Analytical Chemistry,2013:167-172. |
[95] | Cai, X.;Gao, X.;Wang, L.;Wu, Q.;Lin, X..A layer-by-layer assembled and carbon nanotubes/gold nanoparticles-based bienzyme biosensor for cholesterol detection[J].Sensors and Actuators, B. Chemical,2013:575-583. |
[96] | Ahmad, R.;Tripathy, N.;Hahn, Y.-B. .Wide linear-range detecting high sensitivity cholesterol biosensors based on aspect-ratio controlled ZnO nanorods grown on silver electrodes[J].Sensors and Actuators, B. Chemical,2012(1):382-386. |
[97] | Rafiq Ahmad;Nirmalya Tripathy;Sang Hoon Kim;Ahmad Umar;A. Al-Hajry;Yoon-Bong Hahn.High performance cholesterol sensor based on ZnO nanotubes grown on Si/Ag electrodes[J].Electrochemistry communications,2014:4-7. |
[98] | Ramulu, T.S.;Venu, R.;Sinha, B.;Lim, B.;Jeon, S.J.;Yoon, S.S.;Kim, C.G..Nanowires array modified electrode for enhanced electrochemical detection of nucleic acid[J].Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices,2013:258-264. |
[99] | Jamal, M.;Xu, J.;Razeeb, K.M. .Disposable biosensor based on immobilisation of glutamate oxidase on Pt nanoparticles modified Au nanowire array electrode[J].Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices,2010(4):1420-1424. |
[100] | Ali, S.M.U.;Ibupoto, Z.H.;Salman, S.;Nur, O.;Willander, M.;Danielsson, B. .Selective determination of urea using urease immobilized on ZnO nanowires[J].Sensors and Actuators, B. Chemical,2011(1):637-643. |
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:
-
10%
-
20%
-
30%
-
40%
-
50%