4.5 Article

Adsorption Characteristics of WFD Heavy Metal Ions on New Biosourced Polyimide Films Determined by Electrochemical Impedance Spectroscopy

出版社

SPRINGER
DOI: 10.1007/s10904-020-01842-w

关键词

Bio-based polyimide polymers; Heavy metals; Isotherm model; Detection

资金

  1. CAMPUS-FRANCE
  2. Institut Francais of the French Embassy in Tunisia
  3. High Ministry of Education and Research in Tunisia
  4. European Commission [952306]

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In this study, biosourced polyimide polymers were successfully synthesized from novel combinations of monomers, showing high thermal stability and excellent adsorption of heavy metals. Adsorption capacities were higher with increased isosorbide content, and the biosourced polyimides exhibited different adsorption capacities for WFD heavy metals Pb2+, Ni2+, Cd2+, and Hg2+, with the sequence Pb2+ approximately equal to Ni2+ > Cd2+ > Hg2+. The isosorbide-based polyimide showed a detection limit of 50 pM for all WFD heavy metals, significantly lower than environmental quality standards.
In this work, innovative biosourced polyimide polymers were derived from novel combinations of monomers (Isosorbide, 6-FDA and amine cardo). These polymers were obtained with satisfactory yields by polycondensation of different percentages of isosorbide and of 6-FDA (from 100% to 0%). The synthesized polyimides had number average molecular weight in the 17,600-22,000 g/mol range, and they were stable well above 451 degrees C (5% weight loss in N-2). The glass transition temperature (Tg) were found to be in the range of 318-414 degrees C, depending on the composition of the copolymers. The adsorption of Water Framework Directive (WFD) heavy metals (Pb2+, Ni2+, Cd2+, Hg2+) on the biosourced polyimide films deposited on a gold electrode was monitored by the measurements of the impedance of the electrolyte/polyimide polymer/electrode interface. The adsorption isotherm of Pb(2+)on the different polyimide films was modeled according to a Langmuir isotherm with a best fitting. The relative adsorption capacities were higher when the isosorbide content was higher. Comparing the adsorption capacities of the different WFD heavy metals of the isosorbide based polyimide, the sequence is the following one: Pb2+ approximate to Ni2+ > Cd2+ > Hg2+. These results are within the paradigm of Pearson's HSAB principle about the metal-oxygen interaction. When isosorbide based polyimide is the sensitive part of an impedimetric sensor, the detection limit for all the WFD heavy metals is 50 pM, very lower than the environmental quality standards for these WFD priority hazardous substances.

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