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纳米材料及电化学生物传感器;手性识别及电化学手性传感器

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Han Q., Wang Y.H., Guo L.J., Huang Y.H., Fu Y.Z.*, Electrochemical recognition for carboxylic acids based on multilayer architectures of ß-cyclodextrin and methylene blue/reduce-graphene interface on glassy carbon electrodes, Analyst, 2013, 138, 2051-2056. Chen Q., Chen M., Zhou J., Han Q., Wang Y.H., Fu Y. Z.*, The application of chiral arginine and multi-walled carbon nanotubes as matrices to monitor hydrogen peroxide, Bioelectrochem., 2013, 91, 32-36. Wang Y.H., Han Q., Zhang Q., Huang Y.H., Guo L.J., Fu Y.Z.*, Enantioselective recognition of penicillamine enantiomers on bovine serum albumin-modified glassy carbon electrode, J. Solid State Electrochem., 2013, 17, 627-633. Han Q., Wang Y.H., Guo L.J., Huang Y.H., Zhang Q., Fu Y.Z.*, Stereoselective interaction between hemoglobin and penicillamine enantiomers modified chiral surfaces, Anal. Methods, 2013, 5, 1312-1316. Fu Y.Z.*, Han Q., Chen Q., Wang Y.H., Zhou J., Zhang Q., A new strategy for chiral recognition of amino acids. Chem. Commun.,2012, 48(17),2322-2324. Fu Y.Z.*, Chen Q., Zhou J., Han Q., Wang Y.H., Enantioselective recognition of mandelic acid based on γ-globulin modified glassy carbon electrode, Anal. Biochem.,2012, 421,103-107. Zhou J., Chen Q., Wang Y.H., Han Q., Fu Y.Z.*, Stereoselectivity of tyrosine enantiomers in electrochemical redox reactions on gold matrices, Electrochimi. Acta, 2012,59,45-48. Wang Y.H., Zhou J., Han Q., Guo L.J., Fu Y.Z.*, Chiral recognition of penicillamine enantiomers based on DNAMWNT complex modified electrode, Electroanal.,2012, 24(7),1561-1566. Han Q., Chen Q., Wang Y.H., Zhou J., Fu Y.Z.*, Enantioselective recognition of dopa enantiomers in the presence of ascorbic acid or tyrosine, Electroanal., 2012, 24(2),332-337. Chen Q., Zhou J., Han Q., Wang Y.H., Fu Y.Z.*, Electrochemical enantioselective recognition of tryptophane enantiomers based on chiral ligand exchange, Colloid. Surface B, 2012, 92,130-135. Chen Q., Zhou J., Han Q., Wang Y.H., Fu Y.Z.*, A new chiral electrochemical sensor for the enantioselective recognition of penicillamine enantiomers. J. Solid State Electrochem., 2012, 16, 2481-2485. Zhou J., Wang L.L., Chen Q., Wang Y.H., Fu Y.Z.*, Selective response of antigen-antibody reaction on chrial surfaces modified with 1,2-diphenylethylenediamine enantiomers. Surface Interface Anal., 2012, 44, 170-174. Fu Y.Z.*, Wang L.L., Chen Q., Zhou J., Enantioselective recognition of chiral mandelic acid in the presence of Zn (II) ions by L-cysteine-modified electrode, Sensor. Actuat. B, 2011, 155(1), 140-144. Wang L.L., Fu Y.Z.*, Zhou J., Chen Q., Stereoselective interaction between DNA and stable chiral surfaces modified with 1,2-diphenylethylenediamine enantiomers,Electroanal.,2011, 23(2):529-535. Zhou J., Chen Q., Wang Y.H., Han Q., Fu Y.Z.*, Stereospecificity redox reaction of ascorbic acid and isoascorbic acid based on chiral electropolymerized films. Anal. Methods, 2011, 3 (12), 2740-2742. Fu Y.Z.*, Chen M., Cui X., Wang L.L., Chen Q., Zhou J., Recognition behavior of chiral nanocomposites toward biomolecules and its application in electrochemical immunoassay. Sci.China (Chem.), 2010, 53 (6): 1453-1458. Chen M., Fu Y.Z.*, Cui X., Wang L.L., Li M.S., Comparative Analysis of Proline Enantiomer in Chiral Recognition of Biological Macromolecule in Immunoassay. Electroanal., 2009, 21 (21): 2339-2344.

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