This index last updated: 13/12/2021
Journal of Analytical Science
2016XingJ.H.BoH.ZhangQ.
Molecular Imprinted Materials for Determination of Protein in Human UrineJournal of Analytical Science
32 (6), 869-872.
2016WangX.Y.SunF.Q.ZengG.P.LiuX.X.YuJ.W.
Preparation and Application of the Core-Shell Carbon Nanotubes-Molecularly Imprinted Composite for ChloramphenicolsJournal of Analytical Science
32 (6), 758-762.
2016ShenZ.G.HuangB.X.ChenP.Y.WangJ.XiuR.LiuJ.
Preparation and Application of Lincomycin Hydrochloride Electrode Based on Film of Molecularly Imprinted PolymerJournal of Analytical Science
32 (3), 345-348.
2016HuQ.TanX.C.YangS.P.HuangC.Y.WuJ.W.LiX.Y.LiP.F.YuH.C.LiX.Y.LeiF.H.
The Preparation and Application of Nitrofurantoin Molecular-Imprinted Electrochemical Sensor Based on Glassy Carbon ElectrodeJournal of Analytical Science
32 (1), 63-66.
2016ChangY.B.FengY.J.HeQ.
Study of Nicotine Molecularly Imprinted Membrane Sensor Modified by Au-Pd AlloyJournal of Analytical Science
32 (5), 674-678.
2015ZhangL.LiL.J.BaiD.W.ChengH.LiY.Q.CuiF.H.ZhaoB.HuY.
Preparation and Research of Electrochemical Sensor for Gallic Acid Based on Molecularly Imprinted PolymersJournal of Analytical Science
31 (4), 465-469.
2015YangZ.PangG.R.LiJ.P.
Molecularly Imprinted Sensor Based on Lead-Gallic Acid Complexes and Its ApplicationJournal of Analytical Science
31 (4), 470-474.
2015GuL.Y.ShenG.J.ZhaoZ.W.
Preparation and Characteristics of a Molecularly Imprinted Electrode for L-Aspartic AcidJournal of Analytical Science
31 (6), 758-762.
2014ZhuangY.PengY.ZhaoY.G.HeH.SunC.YangS.G.
Determination of Tetracyclines in Water and Milk by Solid-phase Microextraction Based on Tetracylines Molecularly Imprinted Polymers Coupled with HPLCJournal of Analytical Science
30 (4), 451-456.
2014QinC.ChenB.B.HeM.HuB.
Ion Imprinted Magnetic Solid Phase Extraction Combined with Graphite Furnace Atomic Absorption Spectrometry for the Analysis of Trace Ni(II) in Environmental Water SamplesJournal of Analytical Science
30 (6), 783-788.
2014LiJ.ChenC.B.ZhangL.L.ZhouJ.
Preparation of Surface Plasmon Resonance Sensor Based on Malachite Green Molecularly Imprinted Polymer and Its Analytical ApplicationJournal of Analytical Science
30 (6), 873-878.
DOI: In this papera new SPR sensor for the detection of malachite green was prepared by combining the molecularly imprinted technique with surface plasmon resonance spectroscopy. The surface topography of the imprinted SPR sensor was undertaken by atomic force microscopy. The effect of pH value on the adsorption of the imprinted membrane was investigated. Meanwhilewe also evaluated the properties of its adsorptivity and selectivity at the optimal pH. Compared to the non-imprinted filmthe imprinted film showed higher adsorption efficiency and selectivity for malachite green. The method showed good linearity between 8.0 x 10-10 and 1.0 x 10-8 mol/L. When the developed method was used to determine malachite green in the river water and river mudthe detection limits were 8.82 x 10-11 mol/L and 1.55 x 10-10 mol/L based on a signal to noise ratio of 3. The mean recoveries were 91.97% and 93.88%and the relative standard deviations (RSD) obtained were 1.2% and 2.1%respectively. The results indicated that the developed SPR sensor for the detection of malachite green possessed the advantages such as simplicityhigh-speedhigh sensitivity and good recovery.
2014FuC.WeiH.W.DuJ.LiJ.P.
The Fabrication of Glucose Molecular-Imprinted Electrochemical Sensor and Its ApplicationJournal of Analytical Science
30 (2), 181-185.
2014CuiF.H.LiL.J.ZhangR.R.ChengH.YangL.L.CuiY.LiY.Q.
An Electrochemical Ethylparaben Sensor Based on Molecular Imprinted FilmJournal of Analytical Science
30 (3), 365-368.
2013LiuT.WeiX.P.LiJ.P.
An electrochemical molecular imprinted sensor based on silicon dioxide films for oxytetracycline detectionJournal of Analytical Science
29 (1), 25-29.
2013HuN.N.SuL.J.KangQ.S.HuangW.H.
Enrichment and Chemiluminescence Detection of Cd2+ in a Cd2+ Imprinted Polymer Monolith Integrated in a Polydimethylsiloxane MicrochipJournal of Analytical Science
29 (1), 1-5.
2013GuoH.Y.ZhengH.ZhangJ.SongL.XiaX.S.GaoX.Z.
Molecular Imprinting-Chemiluminescence Determination of SulfanilamideJournal of Analytical Science
29 (2), 196-200.
2012ZhengX.Y.ZhouX.C.ZhengH.Y.ZhangL.L.LinR.Y.LinW.X.
Preparation and Properties of p-hydroxybenzoic Acid Molecularly Imprinted Polymer SensorJournal of Analytical Science
27 (4), 469-472.
2012XuX.Y.DengS.J.SunY.M.
Spectroscopic Analysis of Molecular Recognition of Sudan I Molecularly Imprinted PolymerJournal of Analytical Science
27 (5), 661-664.
2012XiaH.WangY.JingT.NiuJ.W.ZhouY.S.HaoQ.L.ZhouY.K.MeiS.R.
Determination of Three Fluoroquinolones Antibiotics Residue in Honey Using Molecularly Imprinted Solid-phase Extraction Coupled with High Performance Liquid ChromatographyJournal of Analytical Science
28 (3), 297-302.
2012SuH.H.FengL.X.SuH.L.XiuR.
Study on Preparation and Recognition Characteristics of Nicardipine Molecularly Imprinted PolymerJournal of Analytical Science
28 (1), 71-74.
2012ShiY.Y.XiongQ.P.ZhangQ.H.YuanA.Q.TangR.M.
Determination of Trace Cd(II) in Traditional Chinese Medicine by Flame Atomic Absorption Spectrometry after Separation and Preconcentration with Ions Imprinting of Chitosan/AttapulgiteJournal of Analytical Science
28 (3), 348-352.
2011QiW.J.ZhangY.G.LiuY.SongQ.J.
A Molecular Imprinting Electrochemical Sensor for L-Tryptophan DeterminationJournal of Analytical Science
27 (3), 331-335.
2011LouD.W.OuJ.J.ZhuB.WangL.WangK.WuW.Y.
Preparation of Formaldehyde Molecularly Imprinted Polymer Beads and Its Application in Needle Trap Extraction Coupled to Gas ChromatographyJournal of Analytical Science
27 (6), 723-726.
2011LiY.T.ZhengJ.J.FangG.J.XieW.H.
The Characteristics and Elution Approaches of Protein Bulk ImprintingJournal of Analytical Science
27 (6), 785-790.
2011GongQ.Q.CaoY.H.WangY.ZhuL.L.
Electrochemical Sensor for Indole-3-Acetic Acid Based on Molecularly Imprinted PolymersJournal of Analytical Science
27 (5), 556-560.
2009YinY.F.WangA.Q.ShenH.LiJ.S.YaoY.X.ChenX.M.
The Synthesis and Characterization of Metsulforon Methyl Imprinted Polymers with High Binding CapacityJournal of Analytical Science
25 (4), 414-418.
2008WangY.JingT.BaoX.W.WangP.ZongX.C.LinY.F.ZhouY.K.MeiS.R.
Preparation and Evaluation of 2-Chlorophenol Imprinted Polymers by Bulk PolymerizationJournal of Analytical Science
24 (5), 531-534.
2007ZhangM.S.HuangJ.R.WeiC.L.YuB.B.
Study of Preparation and Binding Characteristics of Molecularly Imprinted Polymers for 1-(2-Pyridylazo)-2-naphtholJournal of Analytical Science
23 (6), 655-659.
2007CaoX.M.DuL.M.ZhangM.
Recognition Properties of the Pipemidic Acid Imprinted PolymerJournal of Analytical Science
23 (1), 61-64.
2006LiC.Y.WangC.F.WangC.H.HuS.S.
Progress of Electrochemical Sensors Based on Molecularly Imprinted PolymersJournal of Analytical Science
22 (5), 605-610.
2006HeJ.F.LiuL.DengQ.Y.
Study on Preparation of Carvedilol Molecularly Imprinted Polymer and Its Recognition PropertiesJournal of Analytical Science
22 (3), 253-257.
2005XiangW.Z.XuW.J.
Synthesis of Molecular Imprinting Polymers with Silica Gel as a Sacrificial MaterialJournal of Analytical Science
21 (1), 113-114.
2001TangY.ZhouG.W.ShiJ.
Application of chiral selectors in chromatographic analysisJournal of Analytical Science
17 (4), 327-333.
2000LuY.B.LiangZ.W.ZhiangW.Z.XuW.J.
Synthesis and Properties Study of Quinine Molecularly Imprinted PolymerJournal of Analytical Science
16 (4), 310-313.
1999ZhouJ.HeX.W.ShiH.M.
Study on the characteristics of molecular recognition of metal-complexing template polymersJournal of Analytical Science
15 (2), 89-93.
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