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研究领域

· 无机材料化学 · 电化学传感器 · 超级电容器、锂离子电池

近期论文

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Wang GF, Xu G, Zhu YH, Zhang XJ*, A “Turn-on” Carbon nanotube-Ag Nanoclusters Fluorescent Sensor for Sensitive and Selective Detection of Hg2+ with Cyclic Amplification of Exonuclease III Activity, Chemical Communications 50, 747-750, 2014 He XP, Wang GF*, Xu G, Zhu YH, Chen L, Zhang XJ*, A Simple, Fast and Sensitive assay for the detection of DNA, Thrombin and Adenosine triphosphate based on Dual-Hairpin DNA structure, Langmuir 29,14328-14344, 2013 Xu G, Wang GF*, He XP, Zhu YH, Chen L, Zhang XJ*, An Ultrasensitive Electrochemical Method for Detection of Ag+ Based on Cyclic Amplification of Exonuclease III Activity on Cytosine- Ag+-Cytosine, Analyst 138, 6900-6906, 2013 Ji R, Wang LL, Yu LT, Geng BY, Wang GF*, Zhang XJ*, Effective Electrocatalysis Based on Ag2O Nanowire Arrays Supported on Cu Substrate, ACS Applied Materials & Interfaces 5, 10465-10472, 2013 Yu LT, Jin YY, Li LL, Ma J, Wang GF, Geng BY, Zhang XJ*, 3D Porous Gear-like Copper Oxide and their High Electrochemical Performance as Supercapacitor, CrystEngComm 15, 7657–7662, 2013 Wang GF, He XP, Chen L, Zhu YH, Zhang XJ*, Wang L, Conformational Switch for Cisplatin with Hemin/G-Quadruplex DNAzyme Supersandwich Structure, Biosensors & Bioelectronics 50, 210-216, 2013 Zhang XJ*, Ji R, Wang LL, Yu LT, Jie Wang, Geng BY, Wang GF*, Controllable Synthesis of Silver Nanodendrites on Copper Rod and Its Application to Hydrogen Peroxide and Glucose Detection, CrystEngComm, 15, 1173-1178, 2013 Wang GF, Gu AX, Huang Y, Fang B, Geng BY, Zhang XJ*, Non-enzymatic Electrochemical Sensing of Glucose, Microchimica Acta 180, 161-186, 2013 (Invited Review) Wang GF*, He XP, Xu G, Chen L, Zhu YH, Zhang XJ*, Wang L, Detection of T4 Polynucleotide Kinase Activity with Immobilization of TiO2 Nanotubes and Amplification of Au Nanoparticles, Biosensors & Bioelectronics 43, 125-130, 2013 Zhang XJ*, Yu LT, Wang LL, Ji R, Wang GF, Geng BY*, High Electrochemical Performance Based on Ultrathin Porous CuO Nanobelts Grown on Cu Substrate as integrated Electrode, Physical Chemistry Chemical Physics 15, 521-525, 2013 Wang GF*, He XP, Wang L, Zhang XJ*, A Folate Receptor Electrochemical Sensor Based on Terminal Protection and Supersandwich DNAzyme Amplification, Biosensors & Bioelectronics 42, 337–341, 2013 Zhang XJ*, Wang LL, Ji R, Yu LT, Wang GF*, Nonenzymatic Glucose Sensor Based on Cu-Cu2S Nanocompsite Electrode, Electrochemistry Communications 24, 53-56, 2012 Zhang XJ, Shi WH, Zhu JX, Kharistal DJ, Zhao WY, Lalia BS, Hng HH*, Yan QY*, High-Power and High-Energy-Density Flexible Pseudocapacitor Electrodes Made from Porous CuO Nanobelts and SWCNTs, ACS Nano 3, 2013-2019, 2011 Zhang XJ, Lu ZY, Sim DH, Li SZ, Feng YH, Ma J, Chen HY, Boey F, Hng HH*, Yan QY*, Controllable Ag/Ag/Carbon Hybrid Nanostructures for Surface-Enhanced Raman Scattering, Chemistry-A European Journal 17, 13386-13390, 2011 Zhang XJ, Gu AX, Wang GF, Fang B*, Yan QY*, Zhu JX, Sun T, Ma J, Hng HH*, Enhanced Electrochemical Catalytic Activity of New Nickel Hydroxide Nanostructure with (100) Facet, CrystEngComm 13, 188-192, 2011 Zhang XJ, Shi WH, Zhu JX, Zhao WY, Ma J, Mhaisalkar S, Maria TL, Yang YH, Hng HH*, Yan QY*, Synthesis of Porous NiO Nanocrystals with Controllable Surface Area and Their Application as Supercapacitor Electrodes, Nano Research 3, 643-652, 2010 Gu AX, Wang GF, Gu J, Zhang XJ*, Fang B*, An Unusual H2O2 Electrochemical Sensor Based on Ni(OH)2 Nanoplates Grown on Cu Substrate, Electrochemica Acta 55, 7182-7187, 2010 Zhang XJ*, Gu AX, Wang GF, Wei Y, Wang W, Wu HQ, Fang B*, Fabrication of CuO Nanowall on Cu Substrate for High Performance Enzyme-free Glucose Sensor, CrystEngComm 12, 1120-1126, 2010 Fang B*, Gu AX, Wang GF, Wang W, Feng YH, Zhang CH, Zhang XJ*, Silver Oxide Nanowalls grown on Cu Substrate as an Enzymeless Glucose Sensor, ACS Applied Materials & Interfaces 1, 2829-2834, 2009 Zhang XJ*, Wang GF, Zhang W, Wei Y, Fang B, Fixure-reduce Method for the Synthesis of Cu2O/MWCNTs Nanocomposites and Its Application as Enzyme-free Glucose Sensor, Biosensors & Bioelectronics 24, 3395-3398, 2009

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