2 Affinity-Based Methods for the Analysis of Emerging …
63
Sanchez-Martinez ML, Aguilar-Caballos MP, Eremin SA, Gomez-Hens A (2005) Determination of linear alkylbenzenesulfonates in water samples by immunoaffinity chromatography with
fluorescence detection. Anal Chim Acta 553:93–98
Sanchez-Martinez ML, Aguilar-Caballos MP, Eremin SA, Gomez-Hens A (2006) Long-wavelength
fluorimetry as an indirect detection system in immunoaffinity chromatography: application to
environmental analysis. Anal Bioanal Chem 386:1489–1495
Say R, Ersöz A, Türk H, Denizli A (2004) Selective separation and preconcentration of cyanide by
a column packed with cyanide-imprinted polymeric microbeads. Sep Purific Technol 40:9–14
Shen X, Zhu L, Wang N, Ye L, Tang H (2012) Molecular imprinting for removing highly toxic
organic pollutants. Chem Commun 48:788–798
Sun H, Qiao F (2008) Recognition mechanism of water-compatible molecularly imprinted solidphase extraction and determination of nine quinolones in urine by high performance liquid
chromatography. J Chromatogr A 1212:1–9
Shim J, Kumar M, Mukherjee S, Goswami R (2019) Sustainable removal of pernicious arsenic and
cadmium by a novel composite of MnO 2 impregnated alginate beads: a cost-effective approach
for wastewater treatment. J Environ Manage 234:8–20
Singh A, Patel AK, Deka JP, Das A, Kumar A, Kumar M (2019) Prediction of arsenic vulnerable
zones in groundwater environment of rapidly urbanizing setup, Guwahati, India. Geochemistry,
125590
Tamayo FG, Turiel E, Martin-Esteban A (2007) Molecularly imprinted polymers for solid-phase
extraction and solid-phase microextraction: recent developments and future trends. J Chromatogr
A 1152:32–40
Tarley CRT, Kubota LT (2005) Molecularly-imprinted solid phase extraction of catechol from
aqueous effluents for its selective determination by differential pulse voltammetry. Anal Chim
Acta 548:11–19
Teixeira J, Tiritan ME, Pinto MMM, Fernandes C (2019) Chiral stationary phases for liquid
chromatography: recent developments. Molecules 24:865–902
Thomas DH, Beck-Westermeyer M, Hage DS (1994) Determination of atrazine in water using
high-performance immunoaffinity chromatography and reversed-phase liquid chromatography.
Anal Chem 66:3823–3829
Wannapob R, Kanatharana P, Limbut W, Numnuam A, Asawatreratanakul P, Thammakhet C,
Thavarungkul P (2010) Affinity sensor using 3-aminophenylboronic acid for bacteria detection.
Biosens Bioelectron 26:357–364
Ward TJ, Farris AB III (2001) Chiral separations using the macrocyclic antibiotics: a review. J
Chromatogr A 906:73–89
Watabe Y, Kubo T, Nishikawa T, Fujita T, Kaya K, Hosoya K (2006) Fully automated liquid
chromatography–mass spectrometry determination of 17 β -estradiol in river water. J Chromatogr
A 1120:252–259
Wu J, Zhang L, Yang Z (2010) A review on the analysis of emerging contaminants in aquatic
environment. Crit Rev Anal Chem 40:234–245
Xu Z, Chen S, Huang W, Fang G, Pingzhu H, Wang S (2009) Study on an on-line molecularly imprinted solid-phase extraction coupled to high-performance liquid chromatography for
separation and determination of trace estrone in environment. Anal Bioanal Chem 393:1273–1279
Yang Z, Castrignanò E, Estrela P, Frost CG, Kasprzyk-Hordern B (2016) Community sewage sensors
towards evaluation of drug use trends: detection of cocaine in wastewater with DNA-directed
immobilization aptamer sensors. Sci Rep 6:1–10
Yildirim N, Long F, Gao C, He M, Shi HC, Gu AZ (2012) Aptamer-based optical biosensor for rapid
and sensitive detection of 17β-estradiol in water samples. Environ Sci Technol 46:3288–3294
Yildirim N, Long F, He M, Shi HC, Gu AZA (2014) A portable optic fiber aptasensor for sensitive,
specific and rapid detection of bisphenol-A in water samples. Environ Sci Processes Impacts
16:1379–1386
Précédent

- 84/447

Suivant