4.7 Article

Chitosan-Graphene Oxide Composite Membranes for Solid-Phase Extraction of Pesticides

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MDPI
DOI: 10.3390/ijms22168374

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chitosan-graphene oxide membranes; solid-phase extraction; pollutants; chitosan; graphene oxide

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  1. Sapienza University of Rome [RM11916B6F8A0DF6]

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Solid-phase extraction coupled with LC/MS/MS analysis is an effective method for determining organic micropollutants in liquid samples. The use of innovative sorbent materials such as graphene oxide and polysaccharides has shown promise in achieving higher efficiency in isolating and preconcentrating different hydrophilic/hydrophobic pollutants. The prepared chitosan-graphene oxide composite membranes with improved dimensional stability in water, along with the presence of high GO content, exhibited better efficacy in removing various pollutants compared to membranes based solely on chitosan.
Solid-phase extraction (SPE) coupled to LC/MS/MS analysis is a valid approach for the determination of organic micropollutants (OMPs) in liquid samples. To remove the greatest number of OMPs from environmental matrices, the development of innovative sorbent materials is crucial. Recently, much attention has been paid to inorganic nanosystems such as graphite-derived materials. Graphene oxide has been employed in water-purification processes, including the removal of several micropollutants such as dyes, flame retardants, or pharmaceutical products. Polysaccharides have also been widely used as convenient media for the dispersion of sorbent materials, thanks to their unique properties such as biodegradability, biocompatibility, nontoxicity, and low cost. In this work, chitosan-graphene oxide (CS_GO) composite membranes containing different amounts of GO were prepared and used as sorbents for the SPE of pesticides. To improve their dimensional stability in aqueous medium, the CS_GO membranes were surface crosslinked with glutaraldehyde. The composite systems were characterized by Fourier transform infrared spectroscopy, scanning electron microscopy, thermogravimetric analysis, swelling degree, contact angle, and mechanical measurements. As the GO content increased, a decrease in surface homogeneity, an improvement of mechanical properties, and a reduction of thermal stability of the CS-based membranes were observed. The increased dimensional stability in water, together with the presence of high GO amounts, made the prepared composite membranes more efficacious than the ones based just on CS in isolating and preconcentrating different hydrophilic/hydrophobic pollutants.

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