2021
DOI: 10.1002/jssc.202100167
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Selectivity and efficiency of electromembrane extraction of polar bases with different liquid membranes—Link to analyte properties

Abstract: In the present fundamental study, selectivity and efficiency of electromembrane extraction of 50 polar basic substances (−6.7 < log P < +1.0) was systematically studied for ten different supported liquid membranes. For each model substance, 23 molecular descriptors were collected and these were investigated as potential parameters for understanding of extraction efficiency and selectivity by means of partial least squares regression. Overall, a highly aromatic deep eutectic solvent composed of coumarin and thy… Show more

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Cited by 19 publications
(7 citation statements)
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“…DEHP is an anionic (pKa = 2) carrier, and analyte transport across the SLM is facilitated through formation of ion pairs 29 . Contrarily, DEHPi is a neutral compound and analyte interaction occurs mainly through strong hydrogen bond interactions 30 . The DEHPi+NPOE (1:1) mixture was recently found to be effective in EME of amphetamines from breast milk 31 and resulted in a recovery of 74% in the current experiment.…”
Section: Resultsmentioning
confidence: 60%
See 1 more Smart Citation
“…DEHP is an anionic (pKa = 2) carrier, and analyte transport across the SLM is facilitated through formation of ion pairs 29 . Contrarily, DEHPi is a neutral compound and analyte interaction occurs mainly through strong hydrogen bond interactions 30 . The DEHPi+NPOE (1:1) mixture was recently found to be effective in EME of amphetamines from breast milk 31 and resulted in a recovery of 74% in the current experiment.…”
Section: Resultsmentioning
confidence: 60%
“…29 Contrarily, DEHPi is a neutral compound and analyte interaction occurs mainly through strong hydrogen bond interactions. 30 The DEHPi+NPOE (1:1) mixture was recently found to be effective in EME of amphetamines from breast milk 31 and resulted in a recovery of 74% in the current experiment. The presented results are coherent with previous EME of amphetamine from plasma, urine, and breast milk, where amphetamine was better extracted when NPOE was mixed with other compounds 31,32 or accompanied by modifications of the acceptor.…”
Section: Evaluation Of Greennessmentioning
confidence: 56%
“…To date, EME has been conducted using several different organic solvents as the SLMs, such as ethers, alcohols, ketones, and so on [30][31][32][33]. In most previous literature for EME of non-polar basic analytes (log p > 2.5), NPOE has been the most frequently and commonly used organic solvent as the SLM [34][35][36][37]. Since the log p-value of clenbuterol is appropriately 2.63, extraction of clenbuterol was first performed using NPOE as the SLM for 20 min at 120 V. The result revealed that NPOE provided highly effective recovery for clenbuterol and the EME system was highly stable with the system current lower than 50 μA.…”
Section: Supported Liquid Membranementioning
confidence: 99%
“…Similar to SLM-LPME, the analytes in the acceptor phase were ionized to prevent back-extraction [11]. So far, EME has been employed to separate substances in diverse biological samples [12][13][14][15]. For example, Hansen et al extracted 50 polar basic substances from water samples, plasma, and urine [12].…”
Section: Introductionmentioning
confidence: 99%
“…So far, EME has been employed to separate substances in diverse biological samples [12][13][14][15]. For example, Hansen et al extracted 50 polar basic substances from water samples, plasma, and urine [12]. Aladaghlo et al used EME to extract sertraline from urine [16].…”
Section: Introductionmentioning
confidence: 99%