Greenness of dispersive microextraction using molecularly imprinted polymers

Author:

Tadić Tamara1,Marković Bojana1,Bulatović Sandra1,Lukić Jelena2,Radulović Jelena3,Nastasović Aleksandra1,Onjia Antonije4

Affiliation:

1. Institute of Chemistry, Technology and Metallurgy, University of Belgrade , Njegoševa 12 , Belgrade , Serbia

2. Innovation Center of the Faculty of Technology and Metallurgy , Belgrade , Serbia

3. Anahem Laboratory , Mocartova 10 , Belgrade , Serbia

4. Faculty of Technology and Metallurgy, University of Belgrade , Karnegijeva 4 , Belgrade , Serbia

Abstract

Abstract Molecularly imprinted polymers (MIPs) as materials with determined levels of selectivity and specificity for designated analytes have recently gained much attention in various application fields. However, with the growing adoption of green analytical chemistry (GAC) principles, it is essential to investigate the greenness of MIP synthesis and its subsequent application in sample preparation, as well as to evaluate the “green” nature of the developed analytical methodologies, such as dispersive solid-phase microextraction (DSPME). Accordingly, the main objective of this research was to evaluate the greenness of MIP-based glycidyl methacrylate synthesis and MIP use as a DSPME sorbent prior to high-performance liquid chromatography with mass spectrometry (HPLC-MS). The green perspective of MIP-DSPME prior to HPLC-MS was investigated using various analytical metric tools such as the Analytical Eco-Scale, the Green Analytical Procedure Index, and Analytical GREEnness (AGREE). Since these analytical tools are not fully implementable for the assessment of the greenness of the MIP synthesis, some alternative approaches were used to optimize the synthesis parameters to make the MIP DSPME sorbent as close as possible to the GAC principles. The calculated AGREE score (0.62) and 91 points in the Analytical Eco-Scale for the proposed DSPME technique using MIP indicated a high level of greenness.

Publisher

Walter de Gruyter GmbH

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