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应用电化学,电化学分离与环境应用,电化学分析

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(1)J. Li, F-P. Chen, *Guan-Ping Jin, Removals of aqueous sulfur dioxide and hydrogen sulfide using CeO2-NiAl-LDHs coating activated carbon and its mix with carbon nano-tubes, Colloids and Surfaces A: Physicochemical and Engineering Aspects. 476 (2015) 90-97. (2)*Guan-Ping Jin, S-Y. Xu, P. Lei, Y. Fu, X-S. Feng, Electrochemical mediated preparation of chelating polymer brushes at paraffin-impregnated graphite electrode for Pb2+ sensing, Electrochimica Acta, 130 (2014) 526-531. (3)*Guan-Ping Jin, Y. Fu; X.C. Bao, X.S. Feng, Electrochemically mediated atom-transfer radical polymerization of iminodiacetic acidfunctionalizedpoly(glycidyl methacrylate) grafted at carbon fibers for nano-nickel recovery from spent electroless nickel plating baths. Journal of Applied Electrochemistry, 44 (2014) 621-629. (4)*Guan-Ping Jin; X-L. Wang, Preparation of tetraoxalyl ethylenediamine melamine resin grafted-carbon fibers for nano-nickel recovery from spent electroless nickel plating baths, Chemical Engineering Journal, 203 (2012) 440-446. (5) C. Zhao, *Guan-Ping Jin, L.L. Chen, B. Yu, Preparation of molecular imprinted film based on chitosan/nafion/nano-silver/poly quercetin for clenbuterol sensing, Food Chemistry, 129 (2011) 595-600. (6)Guan-Ping Jin*, R. Baron, NV. Rees, L. Xiao, RG. Compton*, Magnetically moveable bimetallic (nickel/silver) nanoparticle/carbon nanotube composites for methanol oxidation. New J Chem 33 (2009) 107-111. (7)Guan-Ping Jin*, X. Peng, Y-F. Ding, The electrochemical modification of clenbuterol for biosensors of neurotransmitters, ascorbic acid and uric acid at paraffin-impregnated graphite electrode, Biosens Bioelectron. 24 (2008) 1037-1041. (8)Guan-Ping Jin*, YF. Ding, PP. Zheng, Electrodeposition of nickel nanoparticles on functional MWCNT surfaces for ethanol oxidation, J Power Sources 166 (2007) 80-86.

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