Dr. Jingdong  Zhang
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Dr. Jingdong Zhang

Professor
Huazhong University of Science and Technology, China


Highest Degree
Ph.D. in Analytical Chemistry from Hunan University, China

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Biography

Dr. Jingdong Zhang holds a position of Professor of Huazhong University of Science and Technology, China. He has completed his Ph.D. in Analytical Chemistry and M.S. degree in Metal Corrosion and Protection from Hunan University, China. He also obtained postdoctoral fellow from Chonbuk National University, South Korea, and Kwansei Gakuin University, Japan. Previously he was appointed as Lecturer at Changsha University of Electric Power, China and Research Associate at Jackson State University, USA. His main area of research interest focuses on Environmental Electrochemistry, Electroanalysis, Biosensors, Pollutant Determination and removal, Nanomaterials, and Photoelectrochemistry. He has published 3 book chapters, 8 presentations in international conference and 70 research articles in journals contributed as author/co-author.

Area of Interest:

Environmental Sciences
100%
Environmental Electrochemistry
62%
Electroanalysis
90%
Biosensors
75%
Pollutant Determination
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Shan, J., Y. Liu, R. Li, C. Wu, L. Zhu and J. Zhang, 2015. Indirect electrochemical determination of ciprofloxacin by anodic stripping voltammetry of Cd(II) on graphene-modified electrode. J. Electroanalyt. Chem., 738: 123-129.
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  2. Liu, Y., R. Wang, Y. Zhu, R. Li and J. Zhang, 2015. Photoelectrochemical sensing of catechol based on CdS-DNA-pristine graphene nanocomposite film. Sensors Actuat. B: Chem., 210: 355-361.
    CrossRef  |  Direct Link  |  
  3. Liu, Y., L. Liu, J. Shan and J. Zhang, 2015. Electrodeposition of palladium and reduced graphene oxide nanocomposites on foam-nickel electrode for electrocatalytic hydrodechlorination of 4-chlorophenol. J. Hazard. Mater., 290: 1-8.
    CrossRef  |  PubMed  |  Direct Link  |  
  4. Borowiec, J., K. Yan, C.C. Tin and J. Zhang, 2015. Synthesis of PDDA functionalized reduced graphene oxide decorated with gold nanoparticles and its electrochemical response toward levofloxacin. J. Electrochem. Soc., 162: H164-H169.
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  5. Zhou, H., Q. Sun, X. Wang, L. Wang, J. Chen, J. Zhang and X. Lu, 2014. Removal of 2,4-dichlorophenol from contaminated soil by a heterogeneous ZVI/EDTA/Air Fenton-like system. Separation Purification Technol., 132: 346-353.
    CrossRef  |  Direct Link  |  
  6. Zhang, M., C. Yang, W. Pu, Y. Tan, K. Yang and J. Zhang, 2014. Liquid phase deposition of WO3/TiO2 heterojunction films with high photoelectrocatalytic activity under visible light irradiation. Electrochimica Acta, 148: 180-186.
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  7. Yang, K., W. Pu, Y. Tan, M. Zhang, C. Yang and J. Zhang, 2014. Enhanced photoelectrocatalytic activity of Cr-doped TiO2 nanotubes modified with polyaniline. Mater. Sci. Semiconduct. Process., 27: 777-784.
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  8. Yan, K., R. Wang and J. Zhang, 2014. A photoelectrochemical biosensor for o-aminophenol based on assembling of CdSe and DNA on TiO2 film electrode. Biosensors Bioelectron., 53: 301-304.
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  9. Wang, R., K. Yan, F. Wang and J. Zhang, 2014. A highly sensitive photoelectrochemical sensor for 4-aminophenol based on CdS-graphene nanocomposites and molecularly imprinted polypyrrole. Electrochimica Acta, 121: 102-108.
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  10. Wang, F., L. Zhu and J. Zhang, 2014. Electrochemical sensor for levofloxacin based on molecularly imprinted polypyrrole-graphene-gold nanoparticles modified electrode. Sensors Actuators B: Chem., 192: 642-647.
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  11. Li, R., Y. Liu, L. Cheng, C. Yang and J. Zhang, 2014. Photoelectrochemical aptasensing of kanamycin using visible light-activated carbon nitride and graphene oxide nanocomposites. Anal. Chem., 86: 9372-9375.
    CrossRef  |  PubMed  |  Direct Link  |  
  12. Li, R., S.E. Williams, Q. Li, J. Zhang, C. Yang and A. Zhou, 2014. Photoelectrocatalytic degradation of ofloxacin using highly ordered TiO2 nanotube arrays. Electrocatalysis, 5: 379-386.
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  13. Fan, M., C. Yang, W. Pu and J. Zhang, 2014. Liquid phase deposition of ZnO film for photoelectrocatalytic degradation of p-nitrophenol. Mater. Sci. Semiconduct. Process., 17: 104-109.
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  14. Zeng, L., R. Wang, L. Zhu and J. Zhang, 2013. Graphene and CdS nanocomposite: A facile interface for construction of DNA-based electrochemical biosensor and its application to the determination of phenformin. Colloids Surf. B: Biointerfaces, 110: 8-14.
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  15. Xie, F., J. Borowiec and J. Zhang, 2013. Synthesis of AgCl nanoparticles-loaded hydrotalcite as highly efficient adsorbent for removal of thiocyanate. Chem. Eng. J., 223: 584-591.
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  16. Wu, J., W. Xiong, W. Pu, C. Yang and J. Zhang, 2013. Treatment of sludge liquor produced in deep dehydration with UV/fenton process. Fresenius Environ. Bull., 22: 1144-1149.
  17. Wu, J., W. Pu, C. Yang, M. Zhang and J. Zhang, 2013. Removal of benzotriazole by heterogeneous photoelectro-Fenton like process using ZnFe2O4 nanoparticles as catalyst. J. Environ. Sci., 25: 801-807.
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  18. Li, R., A. Zhou, Q. Lu, C. Yang and J. Zhang, 2013. In situ monitoring and analysis of the photocatalytic degradation process and mechanism on recyclable Au NPs-TiO2 NTs substrate using surface-enhanced Raman scattering. Colloids Surf. A: Physicochem. Eng. Aspects, 436: 270-278.
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  19. Gong, J., C. Yang, W. Pu and J. Zhang, 2013. Novel one-step preparation of tungsten loaded TiO2 nanotube arrays with enhanced photoelectrocatalytic activity for pollutant degradation and hydrogen production. Catal. Commun., 36: 89-93.
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  20. Borowiec, J., R. Wang, L. Zhu and J. Zhang, 2013. Synthesis of nitrogen-doped graphene nanosheets decorated with gold nanoparticles as an improved sensor for electrochemical determination of chloramphenicol. Electrochimica Acta, 99: 138-144.
    CrossRef  |  Direct Link  |  
  21. Wei, L., J. Borowiec, L. Zhu and J. Zhang, 2012. Electrochemical investigation on the interaction of diclofenac with DNA and its application to the construction of a graphene-based biosensor. J. Solid State Electrochem., 16: 3817-3823.
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  22. Gong, J., W. Pu, C. Yang and J. Zhang, 2012. Tungsten and nitrogen co-doped TiO2 electrode sensitized with Fe-chlorophyllin for visible light photoelectrocatalysis. Chem. Eng. J., 209: 94-101.
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  23. Gong, J., W. Pu, C. Yang and J. Zhang, 2012. A simple electrochemical oxidation method to prepare highly ordered Cr-doped titania nanotube arrays with promoted photoelectrochemical property. Electrochimica Acta, 68: 178-183.
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  24. Borowiec, J., L. Wei, L. Zhu and J. Zhang, 2012. Multi-walled carbon nanotubes modified glassy carbon electrode for sensitive determination of ketoconazole. Anal. Meth., 4: 444-448.
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  25. Wei, L., J. Yang, J. Borowiec and J. Zhang, 2011. A metal-free approach based on graphene oxide-modified electrode for monitoring the photoelectrocatalytic degradation of EDTA. Electroanalysis, 23: 2373-2378.
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  26. Wei, L., J, Borowiec, L. Zhu and J. Zhang, 2011. Electrochemical sensor for monitoring the photodegradation of catechol based on DNA-modified graphene oxide. Microchimica Acta, 173: 439-443.
    CrossRef  |  Direct Link  |  
  27. Wang, R., J. Zhang and Y. Hu, 2011. Liquid phase deposition of hemoglobin/SDS/TiO2 hybrid film preserving photoelectrochemical activity. Bioelectrochemistry, 81: 34-38.
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  28. Hu, X., J. Yang and J. Zhang, 2011. Magnetic loading of TiO2/SiO2/Fe3O4 nanoparticles on electrode surface for photoelectrocatalytic degradation of diclofenac. J. Hazard. Mater., 196: 220-227.
    CrossRef  |  Direct Link  |  
  29. Gong, J., C. Yang, W. Pu and J. Zhang, 2011. Liquid phase deposition of tungsten doped TiO2 films for visible light photoelectrocatalytic degradation of dodecyl-benzenesulfonate. Chem. Eng. J., 167: 190-197.
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  30. Zhang, J., Q. Ding, R. Wang, J. Gong and C. Yang, 2010. Liquid phase deposition of mesoporous TiO2/DNA hybrid film: Characterization and photoelectrochemical investigation. Electrochimica Acta, 55: 3614-3620.
    CrossRef  |  Direct Link  |  
  31. Yang, J., X. Hu and J. Zhang, 2010. Voltammetric monitoring photodegradation of EDTA based on carbon nanotubes-modified electrode. J. Hazard. Mater., 181: 742-746.
    CrossRef  |  Direct Link  |  
  32. Hu, X., J. Yang, C. Yang and J. Zhang, 2010. UV/H2O2 degradation of 4-aminoantipyrine: A voltammetric study. Chem. Eng. J., 161: 68-72.
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  33. Ding, Y., C. Yang, L. Zhu and J. Zhang, 2010. Photoelectrochemical activity of liquid phase deposited TiO2 film for degradation of benzotriazole. J. Hazard. Mater., 175: 96-103.
    CrossRef  |  Direct Link  |  
  34. Zheng, Y., C. Yang, W. Pu and J. Zhang, 2009. Determination of oxalic acid in spinach with carbon nanotubes-modified electrode. Food Chem., 114: 1523-1528.
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  35. Zheng, Y., C. Yang, W. Pu and J. Zhang, 2009. Carbon nanotube-based DNA biosensor for monitoring phenolic pollutants. Microch. Acta, 166: 21-26.
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  36. Oyama, M., S.Y. Yamaguchi and J. Zhang, 2009. Surface observation for Seed-mediated growth attachment of gold nanoparticles on a glassy carbon substrate. Anal. Sci., 25: 249-253.
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  37. Liu, H., C. Yang, W. Pu and J. Zhang, 2009. Formation mechanism and structure of dynamic membrane in the dynamic membrane bioreactor. Chem. Eng. J., 148: 290-295.
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  38. Jiang, G., H. Tang, L. Zhu, J. Zhang and B. Lu, 2009. Improving electrochemical properties of liquid phase deposited TiO2 thin films by doping sodium dodecylsulfonate and its application as bioelectrocatalytic sensor for hydrogen peroxide. Sensors Actuators B: Chem., 138: 607-612.
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  39. Cui, Y., C. Yang, W. Pu, M. Oyama and J. Zhang, 2009. The influence of gold nanoparticles on simultaneous determination of Uric Acid and Ascorbic Acid. Anal. Lett., 43: 22-33.
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  40. Zhang, J., Y. Zheng, G. Jiang, C. Yang and M. Oyama, 2008. Electrocatalytic evaluation of liquid phase deposited methylene blue/TiO2 hybrid films. Electrochem. Commun., 10: 1038-1040.
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  41. Zhang, J. and M. Oyama, 2008. Tunable electrochemical properties of liquid phase deposited TiO2 films. J. Applied Electrochem., 38: 1421-1426.
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  42. Liu, H., C. Yang, W. Pu and J. Zhang, 2008. Removal of nitrogen from wastewater for reusing to boiler feed-water by an anaerobic/aerobic/membrane bioreactor. Chem. Eng. J., 140: 122-129.
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  43. Zhang, J., M. Feng and H. Tachikawa, 2007. Layer-by-layer fabrication and direct electrochemistry of glucose oxidase on single wall carbon nanotubes. Biosensors Bioelectron., 22: 3036-3041.
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  44. Zhang, J. and M. Oyama, 2007. Electrocatalytic activity of three-dimensional monolayer of 3-mercaptopropionic acid assembled on gold nanoparticle arrays. Electrochem. Commun., 9: 459-464.
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  45. Zeng, Y., C. Yang, J. Zhang and W. Pu, 2007. Feasibility investigation of oily wastewater treatment by combination of zinc and PAM in coagulation/flocculation. J. Hazard. Mater., 147: 991-996.
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  46. Qian, G., C. Yang, W. Pu, J. Huang and J. Zhang, 2007. A novel polycatechol/platinum composite film prepared by electrochemical synthesis. Synthetic Metals, 157: 448-453.
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  47. Horibe, T., J. Zhang and M. Oyama, 2007. Effects of capping reagents on the electron transfer reactions on gold Nanoparticle-attached indium tin oxide electrodes. Electroanalysis, 19: 847-852.
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  48. Cui, Y., C. Yang, W. Zeng, M. Oyama, W. Pu, Y. Zheng and J. Zhang, 2007. Three dimensional monolayer of 3-mercaptopropionic acid assembled on gold nanoparticles for electrochemical determination of trace Cu (II). Anal. Lett., 40: 2151-2160.
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  49. Cui, Y., C. Yang, W. Zeng, M. Oyama, W. Pu and J. Zhang, 2007. Electrochemical determination of nitrite using a gold nanoparticles-modified glassy carbon electrode prepared by the seed-mediated growth technique. Anal. Sci., 23: 1421-1425.
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  50. Zhang, J., M. Kambayashi and M. Oyama, 2005. Seed mediated growth of gold nanoparticles on indium tin oxide electrodes: Electrochemical characterization and evaluation. Electroanalysis, 17: 408-416.
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  51. Zhang, J. and M. Oyama, 2005. Gold nanoparticle-attached ITO as a biocompatible matrix for myoglobin immobilization: Direct electrochemistry and catalysis to hydrogen peroxide. J. Electroanal. Chem., 577: 273-279.
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  52. Zhang, J. and M. Oyama, 2005. Gold nanoparticle arrays directly grown on nanostructured indium tin oxide electrodes: Characterization and electroanalytical application. Anal. Chim. Acta, 540: 299-306.
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  53. Zhang, J. and M. Oyama, 2005. Electron transfer kinetics at a liquid phase deposited mesoporous TiO2 film seeded with gold nanoparticles. Electroch. Solid-State Lett., 8: E49-E52.
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  54. Kambayashi, M., J. Zhang and M. Oyama, 2005. Crystal growth of gold nanoparticles on indium tin oxides in the absence and presence of 3-mercaptopropyl-trimethoxysilane. Crystal Growth Des., 5: 81-84.
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  55. Chang, G., J. Zhang, M. Oyama and K. Hirao, 2005. Silver-nanoparticle-attached indium tin oxide surfaces fabricated by a seed-mediated growth approach. J. Phys. Chem. B, 109: 1204-1209.
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  56. Zhang, J., M. Kambayashi and M. Oyama, 2004. A novel electrode surface fabricated by directly attaching gold nanospheres and nanorods onto indium tin oxide substrate with a seed mediated growth process. Electrochem. Commun., 6: 683-688.
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  57. Zhang, J., C. Yang, G. Chang, H. Zhu and M. Oyama, 2004. Voltammetric behavior of TiO2 films on graphite electrodes prepared by liquid phase deposition. Mater. Chem. Phys., 88: 398-403.
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  58. Zhang, J. and M. Oyama, 2004. Electroanalysis of myoglobin and hemoglobin with a boron-doped diamond electrode. Microchem. J., 78: 217-222.
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  59. Zhang, J. and M. Oyama, 2004. A hydrogen peroxide sensor based on the peroxidase activity of hemoglobin immobilized on gold nanoparticles-modified ITO electrode. Electrochimica acta, 50: 85-90.
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  60. Zhang, J., K. Seo and I.C. Jeon, 2003. Application of a gold electrode, modified by a self-assembled monolayer of 2-mercaptodecylhydroquinone, to the electroanalysis of hemoglobin. Anal. Bioanal. Chem., 375: 539-543.
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  61. Zhang, J. and I.C. Jeon, 2002. Electrochemical behavior of dopamine and ascorbic acid at osmium (II) complex cationic monolayer modified gold electrodes. Anal. Sci., 18: 1085-1088.
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  62. Zhou, A., J. Zhang, Q. Xie and S. Yao, 2001. Application of double-impedance system and cyclic voltammetry to study the adsorption of fullerols (C60(OH)n) on biological peptide-adsorbed gold electrode. Biomaterials, 22: 2515-2524.
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  63. Zhang, J., W. Wei, A. Zhou and S. Yao, 2001. A novel investigation of magnetic field effects on the sedimentation of erythrocytes with the series piezoelectric quartz crystal sensor. Colloids Surf. A: Physicochem. Eng. Aspects, 180: 155-161.
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  64. Zhang, J. and W. Wei, 2001. Magnetic field effect on the electrochemical behavior of hemoglobin. Electroanalysis, 13: 888-890.
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  65. Shukun, H., S. Youqun, Z. Jindong and S. Jian, 2001. Mechanism of electroreduction of allyl alcohol at platinized platinum electrode in acidic aqueous solution. J. Org. Chem., 66: 4487-4493.
  66. Zhou, A., J. Zhang, Q. Xie and S. Yao, 2000. Impedance analysis for the investigation of the behaviors of piezoelectric quartz crystal in the liquid at harmonic resonance. Sensors Actuators B: Chem., 67: 68-75.
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  67. Zhang, J., S. Yao, L. Nie and W. Wei, 2000. Evaluation of the kinetic parameters of First-order reactions following charge transfer by applying a Long-path-length spectroelectrochemical technique. Anal. Sci., 16: 87-91.
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  68. Zhang, J., A. Zhou, Q. Xie and W. Wei, 2000. A long path length spectroelectrochemical behavior analysis of the coabsorption system. Talanta, 52: 903-908.
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  69. Yuan, G.W., J.D. Zhang, Y.Q. Song, S.K. Huang and J. Sun, 2000. ESR study of intermediates in electroreduction of 3-hexyne-2, 5-diol. Chem. J. Chin. Univ.-Chin., 21: 952-954.