This index last updated: 13/12/2021
International Journal of Environmental Analytical Chemistry
2018ZhaoQ.ZhouT.Y.LiH.Y.LiuH.C.HuangN.XuY.DingJ.DingL.LiY.
Preparation of magnetic surface molecularly imprinted polymers for the selective extraction of triazines in environmental water samplesInternational Journal of Environmental Analytical Chemistry
98 (11), 1049-1062.
DOI: 10.1080/03067319.2018.1520226
2017MaM.M.ZhangY.ZhaoQ.LiangJ.L.YanH.
Interfacial potentiometry with double poles sensor based on molecularly imprinted polymer for monitoring of 4-aminoazobenzeneInternational Journal of Environmental Analytical Chemistry
97 (3), 289-300.
DOI: 10.1080/03067319.2017.1305372
2017AlizadehT.MirzaeeS.RafieiF.
All-solid-state Cr(III)-selective potentiometric sensor based on Cr(III)-imprinted polymer nanomaterial/MWCNTs/carbon nanocomposite electrodeInternational Journal of Environmental Analytical Chemistry
97 (13), 1283-1297.
DOI: 10.1080/03067319.2017.1408804
2016XiaoJ.P.WangJ.J.FanH.L.ZhouQ.X.LiuX.D.
Recent advances of adsorbents in solid phase extraction for environmental samplesInternational Journal of Environmental Analytical Chemistry
96 (5), 407-435.
DOI: 10.1080/03067319.2016.1150459
2016WangJ.J.HanY.J.ZhaoG.ChenX.H.
Ion-imprinted interpenetrating network gels for solid-phase extraction of heavy metal ionsInternational Journal of Environmental Analytical Chemistry
96 (14), 1341-1355.
DOI: 10.1080/03067319.2016.1251913
2016ShirzadmehrA.RezaeiM.BagheriH.KhoshsafarH.
Novel potentiometric sensor for the trace-level determination of Zn2+ based on a new nanographene/ion imprinted polymer compositeInternational Journal of Environmental Analytical Chemistry
96 (10), 929-944.
DOI: 10.1080/03067319.2016.1210608
2016MirzajaniR.BaghebanM.
Simultaneous preconcentration and determination of malachite green and fuchsine dyes in seafood and environmental water samples using nano-alumina-based molecular imprinted polymer solid-phase extractionInternational Journal of Environmental Analytical Chemistry
96 (6), 576-594.
2016LiH.F.XieT.ShiD.D.JinJ.XieC.G.
Enhanced electrochemiluminescence of luminol at the gold nanoparticle/carbon nanotube/electropolymerised molecular imprinting composite membrane interface for selective recognition of triazophosInternational Journal of Environmental Analytical Chemistry
96 (13), 1300-1311.
DOI: 10.1080/03067319.2016.1250261
2016FasihiJ.BavarsadN.ShariatiS.AshtariK.
Preparation of ion-imprinted polyvinyl sulfonate-grafted silica particles for trace enrichment of Th(IV) prior to determination by inductively coupled plasma-mass spectrometryInternational Journal of Environmental Analytical Chemistry
96 (8), 789-800.
DOI: 10.1080/03067319.2016.1196685
2015YilmazV.KartalS.
Preparation of a new Cu(II)-imprinted polymer and its application for the determination of trace copper in water samples by flame atomic absorption spectrometryInternational Journal of Environmental Analytical Chemistry
95 (2), 106-120.
DOI: 10.1080/03067319.2014.994614
2015Hashemi-MoghaddamH.JediD.J.
Solid-phase microextraction of chlorpyrifos in fruit samples by synthesised monolithic molecularly imprinted polymer fibresInternational Journal of Environmental Analytical Chemistry
95 (1), 33-44.
DOI: 10.1080/03067319.2014.983495
2015DoM.H.FloreaA.FarreC.BonhommeA.BessueilleF.VocansonF.Tran-ThiN.T.Jaffrezic-RenaultN.
Molecularly imprinted polymer-based electrochemical sensor for the sensitive detection of glyphosate herbicideInternational Journal of Environmental Analytical Chemistry
95 (15), 1489-1501.
DOI: 10.1080/03067319.2015.1114109
2014de OliveiraF.M.GonįalvesA.C.Jr.DragunskiD.C.SegatelliM.G.TarleyC.R.T.
Application of Ni(II)-imprinted cross-linked poly(methacrylic acid) synthesised through double-imprinting method for the on-line preconcentration of Ni(II) ions in aqueous mediaInternational Journal of Environmental Analytical Chemistry
94 (10), 1061-1071.
DOI: 10.1080/03067319.2014.891110
2013Godlewska-ZylkiewiczB.LesniewskaB.WilczewskaA.Z.
Evaluation of ion imprinted polymers for the solid phase extraction and electrothermal atomic absorption spectrometric determination of palladium in environmental samplesInternational Journal of Environmental Analytical Chemistry
93 (5), 483-498.
DOI: 10.1080/03067319.2012.656096
2013AshkenaniH.TaherM.A.
Application of a new ion-imprinted polymer for solid-phase extraction of bismuth from various samples and its determination by ETAASInternational Journal of Environmental Analytical Chemistry
93 (11), 1132-1145.
DOI: 10.1080/03067319.2012.708746
2013AlizadehT.RezalooF.
Toluene chemiresistor sensor based on nano-porous toluene-imprinted polymerInternational Journal of Environmental Analytical Chemistry
93 (8), 919-934.
DOI: 10.1080/03067319.2012.708744
2012QiX.L.YangX.M.WangB.YangH.DengA.P.
Development of a broad selective molecularly imprinted polymers-based solid phase extraction of contraceptive drug levonorgestrel from water samplesInternational Journal of Environmental Analytical Chemistry
92 (3), 268-278.
DOI: 10.1080/03067319.2010.533767
2012ChenJ.J.LianH.T.SunX.Y.LiuB.
Development of a chitosan molecularly imprinted electrochemical sensor for trichlorphon determinationInternational Journal of Environmental Analytical Chemistry
92 (9), 1046-1058.
DOI: 10.1080/03067319.2010.496054
2012AlizadehT.
Molecularly imprinted nanoparticles-based electrochemical sensor for determination of ultratrace parathion in real samplesInternational Journal of Environmental Analytical Chemistry
92 (15), 1742-1760.
DOI: 10.1080/03067319.2011.592947
2011ZhengH.YangS.L.WangJ.C.SunW.F.
Highly selective determination of rhodium(III) using silica gel surface-imprinted solid-phase extractionInternational Journal of Environmental Analytical Chemistry
91 (11), 1013-1023.
DOI: 10.1080/03067310903402441
2011LinC.R.WangH.Q.WangY.Y.ZhouL.LiangJ.
Selective preconcentration of trace thorium from aqueous solutions with Th(IV)-imprinted polymers prepared by a surface-grafted techniqueInternational Journal of Environmental Analytical Chemistry
91 (11), 1050-1061.
DOI: 10.1080/03067311003629677
2011LiC.X.PanJ.M.ZouX.H.GaoJ.XieJ.M.YongshengY.
Synthesis and applications of novel attapulgite-supported Co(II)-imprinted polymers for selective solid-phase extraction of cobalt(II) from aqueous solutionsInternational Journal of Environmental Analytical Chemistry
91 (11), 1035-1049.
DOI: 10.1080/03067310903502752
2011KhajehM.SanchooliE.
A pre-concentration procedure employing a new imprinted polymer for the determination of copper in waterInternational Journal of Environmental Analytical Chemistry
91 (13), 1310-1319.
DOI: 10.1080/03067310903020334
2009SarajiM.YousefiH.MeghdadiS.
Preparation and evaluation of an ion imprinted sol-gel material for selective solid-phase extraction of Ni(II)International Journal of Environmental Analytical Chemistry
89 (5), 305-317.
DOI: 10.1080/03067310802610268
2009KhajehM.KaykhaiiM.MirmoghaddamM.HashemiH.
Separation of zinc from aqueous samples using a molecular imprinting techniqueInternational Journal of Environmental Analytical Chemistry
89 (13), 981-992.
DOI: 10.1080/03067310902719159
2008HeQ.ChangX.J.ZhengH.JiangN.WangX.Y.
Determination of chromium(III) and total chromium in natural waters using a surface ion-imprinted silica gel as selective adsorbentInternational Journal of Environmental Analytical Chemistry
88 (6), 373-384.
DOI: 10.1080/03067310701710870
2007TekeA.B.SezginturkM.K.TekeM.DėnĮkayaE.TelefoncuA.
A bio-imprinted ascorbate oxidase biosensorInternational Journal of Environmental Analytical Chemistry
87 (10), 723-729.
DOI: 10.1080/03067310701327758
2006PanJ.Y.WangS.ZhangR.F.
A novel Pb(II)-imprinted IPN for selective preconcentration of lead from water and sedimentsInternational Journal of Environmental Analytical Chemistry
86 (11), 855-865.
DOI: 10.1080/03067310600665654
2003MarxS.ZaltsmanA.
Molecular imprinting of sol gel polymers for the detection of paraoxon in waterInternational Journal of Environmental Analytical Chemistry
83 (7-8), 671-680.
DOI: 10.1080/0306731021000015029
2001JanottaM.WeissR.MizaikoffB.BrüggemannO.YeL.MosbachK.
Molecularly imprinted polymers for nitrophenols - An advanced separation material for environmental analysisInternational Journal of Environmental Analytical Chemistry
80 (2), 75-86.
DOI: 10.1080/03067310108044374