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Original Article

Potentiometric, enantioselective sensors for alkyl and aryl ammonium ions of pharmaceutical significance, based on lipophilic cyclodextrins

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Pages 409-419 | Received 15 Sep 1994, Accepted 08 Mar 1995, Published online: 08 Jul 2009

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J. Gallardo-González, A. Baraket, A. Bonhomme, N. Zine, M. Sigaud, J. Bausells & A. Errachid. (2018) Sensitive Potentiometric Determination of Amphetamine with an All-Solid-State Micro Ion-Selective Electrode. Analytical Letters 51:3, pages 348-358.
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Marek Trojanowicz & Marzena Wcisło. (2005) Electrochemical and Piezoelectric Enantioselective Sensors and Biosensors. Analytical Letters 38:4, pages 523-547.
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Cheng Jun Sun, Xian Xiang Sun & Hassan Y. Aboul‐Enein. (2004) Potentiometric, Enantioselective Electrode Responsive to Propranolol Enantiomers Based on a Lipophilic β‐Cyclodextrin. Analytical Letters 37:11, pages 2259-2266.
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Hassan Y. Aboul-Enein, Raluca-Ioana Stefan & Gabriel Lucian Radu. (1999) Biosensor for the Enantioselecttve Analysis of S-Perindopril. Preparative Biochemistry & Biotechnology 29:1, pages 55-61.
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Hassan Y. Aboul-Enein, Raluca-Ioana Stefan & Jacobus F. van Staden. (1999) Analysis of Several Angiotensin-Converting Enzyme Inhibitors using Potentiometric, Enantioselective Membrane Electrodes. Analytical Letters 32:4, pages 623-632.
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Raluca Ioana Stefan, Jacobus (Koos)F. van Staden & HassanY. Aboul-Enein. (1998) A New Construction for Potentiometric, Enantioselective Membrane Electrodes, and Use for L-Proline Assay.. Analytical Letters 31:11, pages 1787-1794.
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Raluca-Ioana Stefan, George Emil Baiulescu & HassanY. Aboul-enien. (1997) Ion-Selective Membrane Electrodes in Pharmaceutical Analysis. Critical Reviews in Analytical Chemistry 27:4, pages 307-321.
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Articles from other publishers (26)

Niloofar Haghighian & Ritu Kataky. (2023) Rapid fingerprinting of bacterial species using nanocavities created on screen-printed electrodes modified by β-cyclodextrin. Sensors & Diagnostics.
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J. Gallardo-Gonzalez, A. Saini, A. Baraket, S. Boudjaoui, A. Alcácer, A. Streklas, F. Teixidor, N. Zine, J. Bausells & A. Errachid. (2018) A highly selective potentiometric amphetamine microsensor based on all-solid-state membrane using a new ion-pair complex, [3,3′-Co(1,2-closo-C2B9H11)2]− [C9H13NH]+. Sensors and Actuators B: Chemical 266, pages 823-829.
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Sara Maria R. de Sousa, Luciana Guimarães, Jefferson L. Ferrari, Wagner B. De Almeida & Clebio S. NascimentoJr.Jr.. (2016) A DFT investigation on the host/guest inclusion process of prilocaine into β-cyclodextrin. Chemical Physics Letters 652, pages 123-129.
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Artur J. M. Valente, Cesar M. C. Filho, Adley Rubira, Edvani C. Muniz & Hugh D. Burrows. (2014) Transport properties of ephedrine hydrochloride through poly(vinyl alcohol) matrices—a simple method for enantiomeric differentiation. Colloid and Polymer Science 292:7, pages 1665-1673.
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Reena R. Gaichore & Ashwini K. Srivastava. (2013) Electrocatalytic determination of propranolol hydrochloride at carbon paste electrode based on multiwalled carbon-nanotubes and γ-cyclodextrin. Journal of Inclusion Phenomena and Macrocyclic Chemistry 78:1-4, pages 195-206.
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Raluca-Ioana Stefan-van Staden & Jacobus F. van Staden. (2013) Quinine, Quinidine and Their Tert-butyl Carbomylated Derivatives as Chiral Selectors in the Enantioselective, Potentiometric Membrane Electrodes Design: Their Application for the Assay of (S) and (R) Enantiomers of 3,5-dinitrobenzoyl Leucine. Journal of The Electrochemical Society 160:10, pages B196-B200.
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Eric de Souza Gil & Giselle Rodrigues de Melo. (2010) Electrochemical biosensors in pharmaceutical analysis. Brazilian Journal of Pharmaceutical Sciences 46:3, pages 375-391.
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Artur J. M. ValenteAna. C. F. RibeiroJorge M. C. MarquesPaulo E. AbreuVictor M. M. LoboRitu Kataky. (2009) Transport Properties of Aqueous Solutions of (1 R ,2 S )-(−)- and (1 S ,2 R )-(+)-Ephedrine Hydrochloride at Different Temperatures . Journal of Chemical & Engineering Data 55:3, pages 1145-1152.
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Ritu Kataky & Paula Lopes. (2009) Chiral detection at a liquid–liquid interface. Chemical Communications:12, pages 1490.
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Marzena Kaniewska, Tomasz Sikora, Ritu Kataky & Marek Trojanowicz. (2008) Enantioselectivity of potentiometric sensors with application of different mechanisms of chiral discrimination. Journal of Biochemical and Biophysical Methods 70:6, pages 1261-1267.
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Emad L. Izake. (2007) Chiral discrimination and enantioselective analysis of drugs: An overview. Journal of Pharmaceutical Sciences 96:7, pages 1659-1676.
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Raluca-Ioana Stefan-van Staden. 2007. Electrochemical Sensor Analysis. Electrochemical Sensor Analysis 53 71 .
Raluca-Ioana Stefan-van Staden & R’afat M. Nejem. (2006) Cyclodextrins-based enantioselective, potentiometric membrane electrodes for l-vesamicol assay in serum samples. Sensors and Actuators B: Chemical 117:1, pages 123-127.
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Patrick Shahgaldian & Uwe Pieles. (2006) Cyclodextrin Derivatives as Chiral Supramolecular Receptors for Enantioselective Sensing. Sensors 6:6, pages 593-615.
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Deia Abd El-Hady, Mohamed Mahmoud Seliem, Roberto Gotti & Nagwa Abo El-Maali. (2006) Novel voltammetric method for enantioseparation of racemic methotrexate. Sensors and Actuators B: Chemical 113:2, pages 978-988.
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Georgy Grancharov, Ezat Khosravi, David Wood, Andrew Turton & Ritu Kataky. (2005) Individually addressable recessed gold microelectrode arrays with monolayers of thio-cyclodextrin nanocavities. The Analyst 130:10, pages 1351.
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R.-I. Stefan, H.Y. Aboul-Enein & J.F. van Staden. (2002) Enantioselective Electrochemical Sensors. Sensors Update 10:1, pages 123-141.
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Raluca-Ioana Stefan, Jacobus F van Staden & Hassan Y Aboul-Enein. (2001) Molecular recognition in chiral discrimination. Crystal Engineering 4:2-3, pages 113-118.
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Eva Schneiderman & Apryll M. Stalcup. (2000) Cyclodextrins: a versatile tool in separation science. Journal of Chromatography B: Biomedical Sciences and Applications 745:1, pages 83-102.
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Raluca-Ioana Stefan, Jacobus (Koos) F van Staden & Hassan Y Aboul-Enein. (1999) A new construction for a potentiometric, enantioselective membrane electrode—its utilization to the S-captopril assay. Talanta 48:5, pages 1139-1143.
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Raluca-Ioana Stefan, Jacobus (Koos) F. Van Staden & Hassan Y. Aboul-Enein. (1999) S-perindopril assay using a potentiometric, enantioselective membrane electrode. Chirality 11:8, pages 631-634.
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M. Ben Ali, R. Kalfat, H. Sfihi, H. Ben Ouada, J.M. Chovelon & N. Jaffrezic-Renault. (1998) Cyclodextrin-polymethylhydrosiloxane gel as sensitive membrane for heavy ion sensors. Materials Science and Engineering: C 6:1, pages 53-58.
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Philippe Bühlmann, Ernö Pretsch & Eric Bakker. (1998) Carrier-Based Ion-Selective Electrodes and Bulk Optodes. 2. Ionophores for Potentiometric and Optical Sensors. Chemical Reviews 98:4, pages 1593-1688.
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Jiří Janata, Mira Josowicz, Petr Vanýsek & D. Michael DeVaney. (1998) Chemical Sensors. Analytical Chemistry 70:12, pages 179-208.
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Ritu Kataky, Simon Palmer, David Parker & Dominic Spurling. (2005) Alkylated cyclodextrin‐based potentiometric and amperometric electrodes applied to the measurement of tricyclic antidepressants. Electroanalysis 9:16, pages 1267-1272.
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Ritu Kataky & Simon Palmer. (2005) Local anesthetics measured by lipophilic β‐cyclodextrin‐based ion‐selective electrodes. Electroanalysis 8:6, pages 585-590.
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