1、WangYY, Chen, F, Ye XX, Wu T, Wu KB*, Li CY*. Photoelectrochemical immunosensing of tetrabromobisphenol A based on the enhanced effect of dodecahedral gold nanocrystals/MoS2, nanosheets.Sensors & Actuators B Chemical,245 (2017) 205-212.
2、Ji LD, Zhang YY, Yu SJ, Hu SS, Wu KB*. Morphology-tuned preparation of nanostructured resorcinol-formaldehyde carbonized polymers as highly sensitive electrochemical sensor for amaranth. Journal of Electroanalytical Chemistry,779(2016) 169-175.
3、Ji LD, Wang YY, Wu KB*, Zhang WK*. Simultaneous determination of environmental estrogens: diethylstilbestrol and estradiol using Cu-BTC frameworks-sensitized electrode.Talanta,159(2016) 215-221.
4、Chen XR, Wang YY, Tong JH, Xia SH, Zhou YK*, Wu KB*. Electrochemical sensing platform for tetrabromobisphenol A at pM level based on the synergetic enhancement effects of graphene and dioctadecyldimethylammonium bromide.Analytica Chimica Acta,935(2016) 90-96.
5、Ji LD, Cheng Q, Wu KB*, Yang XF*. Cu-BTC frameworks-based electrochemical sensing platform for rapid and simple determination of Sunset yellow and Tartrazine.Sensors & Actuators B Chemical,231(2016) 12-17.
6、Zhang YY, Yan P, Wan QJ*, Wu KB*, Yang NJ*. Morphology-dependent electrochemistry of FeOOH nanostructures.Electrochemistry Communications,68(2016) 10-14.
7、Li CC, Chen XR, Wu KB*, Yu SJ*. Signal enhancement of cetyltrimethylammonium bromide as a highly-sensitive sensing strategy for tetrabromobisphenol A.Journal of Electroanalytical Chemistry,770(2016) 39-43.
8、Chen XR, Ji LD, Zhou YK*, Wu KB*. Synergetic enhancement of gold nanoparticles and 2-mercaptobenzothiazole as highly-sensitive sensing strategy for tetrabromobisphenol A.Scientific Reports,6(2016) 26044-20653.
9、Zhang YY, Cheng Q, Zheng M, Liu X, Wu KB*.Iron oxyhydroxide nanorods with high electrochemical reactivity as a sensitive and rapid determination platform for 4-chlorophenol.Journal of Hazardous Materials,307(2016) 36-42.
10、Cheng Q, Ji LD, Wu KB*, Zhang WK*. Morphology-dependent electrochemical enhancements of porous carbon as sensitive determination platform for ascorbic acid, dopamine and uric acid. Scientific Reports,6(2016) 22309-22318.
11、Chen XR, Ji LD, Zhou Y, Xia SH, Tong JH, Wu KB*. Electrochemical enhancement of long alkyl-chained surfactants for sensitive determination of tetrabromobisphenol A.Electrochimica Acta,190(2016) 490-494.
12、Wang YY, Liu GS, Hou XD, Huang YN, Li CY*,Wu KB*. Assembling gold nanorods on a poly-cysteine modified glassy carbon electrode strongly enhance the electrochemical reponse to tetrabromobisphenol A.Microchimica Acta,183 (2016) 689-696.
13、Wang J, Chen X, Wu KB*, Zhang M, Huang WS*. Highly‐sensitive electrochemical sensor for Cd and Pb based on the synergistic enhancement of exfoliated graphene nanosheets and bismuth.Electroanalysis,28(2016) 63-68.
14、 Wu C, Cheng Q, Wu KB*. Electrochemical functionalization of N-methyl-2-pyrrolidone-exfoliated graphene nanosheets as highly sensitive analytical platform for phenols.Analytical Chemistry,87(2015) 3294-3299.
15、 Cheng Q, Xia SH, Tong JH, Wu KB*. Highly-sensitive electrochemical sensing platforms for food colourants based on the property-tuning of porous carbon. Analytica Chimica Acta,887(2015) 75-81.
16、 Wang YY, Han M, Liu GS, Hou XD, Huang YN, Wu KB*, Li CY*. Molecularly imprinted electrochemical sensing interface based on in-situ-polymerization of amino-functionalized ionic liquid for specific recognition of bovine serum albumin.Biosensors & Bioelectronics,74 (2015) 792-798.
17、Hu LT, Cheng Q, Chen DC, Ma M, Wu KB*. Liquid-phase exfoliated graphene as highly-sensitive sensor for simultaneous determination of endocrine disruptors: diethylstilbestrol and estradiol. Journal of Hazardous Materials,283(2015) 157-163.
18、Wu C, Tang Y, Wan CD, Liu HY, Wu KB*. Enhanced-oxidation and highly-sensitive detection of acetaminophen, guanine and adenine using NMP-exfoliated graphene nanosheets-modified electrode. Electrochimica Acta,166 (2015) 285-292.
19、Zhang YY, Hu LT, Liu X*, Liu BF, Wu KB*. Highly-sensitive and rapid detection of ponceau 4R and tartrazine in drinks using alumina microfibers-based electrochemical sensor.Food Chemistry,166(2015) 352–357.
20、Chen XR, Zheng M, Zhou YK*, Tong JH , Wu KB*. Electrochemical enhancement of acetylene black film as sensitive sensing platform for toxic tetrabromobisphenol A.Rsc Advances,5(2015) 105837-105843.
21、 Wu C, Cheng Q, Wu KB*, Wu G, Li Q*. Graphene prepared by one-pot solvent exfoliation as a highly sensitive platform for electrochemical sensing.Analytica Chimica Acta,825 (2014) 26-33.
22、 Song XJ, Shi Z, Tan XH , Zhang SH, Liu GS, Wu KB*. One-step solvent exfoliation of graphite to produce a highly-sensitive electrochemical sensor for tartrazine.Sensors & Actuators B Chemical,197(2014) 104-108.
23、 Wu C, Cheng Q, Li LQ, Chen JP, Wu KB*. Synergetic signal amplification of graphene-Fe2O3, hybrid and hexadecyltrimethylammonium bromide as an ultrasensitive detection platform for bisphenol A.Electrochimica Acta,115(2014) 434-439.