TY - JOUR A1 - Cherbib, S. A1 - Jlalia, I. A1 - Chabbah, T. A1 - Chatti, S. A1 - Marestin, C. A1 - Mercier, R. A1 - Weidner, Steffen A1 - Casabianca, H. A1 - Jaffrezic-Renault, N. A1 - Abderrazak, H. T1 - Design of New Partially Bio-Based Polyguanamines for the Reversible Adsorption of Phenolic Molecules from Olive Mill Wastes N2 - Olive mill wastewater produces a variety of potent antioxidants, including hydroxytyrosol, oleuropein, and tyrosol, that have been widely used in agriculture, pharmacy, and cosmetics. This study aims to design new poly(guanamine)s phases by polycondensation of modified triazine monomers with both petro-based and biosourced diamines, to act as stationary phases for the uptake of these phenolic molecules. Obtained polymers were characterized by NMR spectroscopy, differential scanning calorimetry (DSC), and thermogravimetric analysis (TGA). The adsorption results showed that the newly synthesized polymers can effectively uptake the less polar phenolic compounds, ferulic acid, and caffeic acid. The isosorbide-based polymer (P6) presented the highest sorption efficiency, due to the hydrophilic properties of isosorbide associated with the proton affinity of the triazine groups. All the phenolic compounds were successfully desorbed from the P6 polymer using a minimal amount of a methanol/acetonitrile mixture. P6 polymer could be used for four successive adsorption processes without loss of efficiency. KW - Olive mill wastewater KW - Triazine KW - Isosorbide KW - Adsorption KW - Phenolic compounds PY - 2024 DO - https://doi.org/10.1007/s42250-024-01081-3 SN - 2522-5758 SP - 1 EP - 11 PB - Springer Science and Business Media LLC AN - OPUS4-61348 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Jlalia, I. A1 - Gomri, M. A1 - Chabbah, T. A1 - Chatti, S. A1 - Weidner, Steffen A1 - Abderrazak, H. A1 - Marestin, C. A1 - Mercier, R. A1 - Ben Halima, H. A1 - Lakard, B. A1 - Jaffrezic Renault, N. T1 - Design of Fluorinated Poly(Ether-Pyridine) Films for Impedimetric Detection of Heavy Metal Ions N2 - A series of fluorinated poly(ether-pyridine)s were synthesized via polycondensation of bis-perfluoropyridine with either bisphe-nol A (BPA) or isosorbide, a bio-sourced diol. The polymers were characterized using 1 H and 19 F NMR spectroscopy, and their molecular weights were determined using GPC. Thermal properties were assessed using thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). The presence of isosorbide in polymer P2 increases the glass transition temperature and results in a lower molecular weight and a higher hydrophilicity. On the other hand, polymer P3, based on BPA, shows the best thermal stability, the highest molecular weight, and the most pronounced hydrophobic character. Electrochemical impedance spectroscopy (EIS) was used to evaluate the modified gold electrodes for the selective detection of metal ions. Among the four target ions (Ni 2+, Cd 2+, Pb2+, and Hg 2+), defined by the European Water Framework Directive, Pb2+ was selectively detected on the hydrophilic polymer P2, while Cd 2+ was selectively detected on the hydrophobic polymer P3. The achieved detection limits were 5 × 10−11 M, corresponding to 10 ng/L for Pb2+ and 5.6 ng/L for Cd 2+, respectively. KW - Cadmium KW - Electrochemical impedance spectroscopy KW - Fluorinated polyether pyridines KW - Isosorbide KW - Lead PY - 2025 DO - https://doi.org/10.1002/pat.70038 SN - 1099-1581 VL - 36 IS - 1 SP - 1 EP - 14 PB - John Wiley & Sons Ltd. AN - OPUS4-62384 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Mechichi, R. A1 - Chabbah, T. A1 - Chatti, S. A1 - Jlalia, I. A1 - Sanglar, Corinne A1 - Casablanca, H. A1 - Vulliet, E. A1 - Marestin, C. A1 - Mercier, R. A1 - Weidner, Steffen A1 - Errachid, A. A1 - Hammani, M. A1 - Jaffrezic-Renault, N. A1 - Abderrazak, H. T1 - Semi‑interpenetrating Network‑Coated Silica Gel Based on Green Resources for the Efcient Adsorption of Aromatic Pollutants from Waters N2 - In the framework of the development of green analytical chemistry, a silica gel (SG) coated with a semi-penetrating network based on the partially biosourced poly(ethersulfone) is studied for a greener extraction process of aromatic organic pollutants. An optimized composition of the semi-penetrating network (80% of the linear polymer (LP): isosorbide-based poly(ethersulfone) and 20% cross-linking agent (XP) type bismaleimide) leads to a total adsorption of the selected aromatic pollutants, whatever their hydrophilicity. Adsorption characteristic, kinetics and isotherms of the SG-semi-INP LP80/XP20 for p-hydroxybenzoic acid and for toluic acid were studied. Langmuir model led to a better ftting of the adsorption isotherms; the adsorption of toluic acid is easier than that of p-hydroxybenzoic acid. 1/n values of benzoic acid was lower for SGsemi-INP LP80/XP20 compared to biochar and to cross-linked methacrylate resin, showing a higher adsorption efciency. KW - Isosorbide KW - Semi-interpenetrating networks KW - Silica gel modification KW - Aromatic pollutants KW - Adsorption PY - 2022 DO - https://doi.org/10.1007/s42250-022-00463 SN - 2522-5758 SP - 1 EP - 18 PB - Springer AN - OPUS4-55720 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -