Graphene and zeolite as adsorbents in bar-micro-solid phase extraction of pharmaceutical compounds of diverse polarities

Jajuli, M.N. and Herzog, G. and Hébrant, M. and Poh, N.E. and Rahim, A.A. and Saad, B. and Hussin, M.H. (2021) Graphene and zeolite as adsorbents in bar-micro-solid phase extraction of pharmaceutical compounds of diverse polarities. RSC Advances, 11 (27). pp. 16297-16306. ISSN 20462069

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Abstract

A bar micro-solid phase (bar μ-SPE) extraction method using either graphene or zeolite or their mixtures as an adsorbent, coupled with high-performance liquid chromatography (using a C1 column) was developed for the simultaneous determination of pharmaceutical compounds (metformin (MET), buformin (BUF), phenformin (PHEN) and propranolol (PROP)) of diverse polarity (log�P from -1.82 to 3.10). Parameters influencing the extraction, such as conditioning solvents, pH of the sample, sample volume, amount of adsorbent, stirring rate, time of extraction, type and volume of desorption solvent and time of desorption were investigated. Under the optimized conditions, the extraction method using graphene (extraction efficiency, EE, �6-15) resulted in the least amount of extracted drugs. However, the use of zeolite and zeolite/graphene mixtures improves the EE significantly, i.e. 30 for PHEN and 42 for PROP using zeolite; 22 for MET and 18 for BUF using the adsorbent mixture. Under similar conditions, enrichment factors for these drugs range from 11-15. The validated method was performed for the determination of the drugs that were spiked to urine samples. Good recoveries ranging from 72.8 to 116 were achieved. This journal is © The Royal Society of Chemistry.

Item Type: Article
Additional Information: cited By 4
Uncontrolled Keywords: Column chromatography; Desorption; Graphene; High performance liquid chromatography; Mixtures; Phase separation; Zeolites, Enrichment factors; Extraction efficiencies; Extraction method; Micro-solid-phase extractions; Optimized conditions; Pharmaceutical compounds; Simultaneous determinations; Validated methods, Extraction
Depositing User: Mr Ahmad Suhairi UTP
Date Deposited: 10 Nov 2023 03:29
Last Modified: 10 Nov 2023 03:29
URI: https://khub.utp.edu.my/scholars/id/eprint/15015

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