Nitrite Electroreduction Enhanced by Hybrid Compounds of Keggin Polyoxometalates and 1‐Butyl‐3‐Vinylimidazolium

Author:

Zhou Yulin12ORCID,Sun Jing13ORCID,Gallet Sébastien4,Raya Jesus5ORCID,Boudon Corinne1ORCID,Bonnefont Antoine6ORCID,Ruhlmann Laurent1ORCID,Badets Vasilica1ORCID

Affiliation:

1. Laboratoire d'Electrochimie et de Chimie Physique du Corps Solide Université de Strasbourg Institut de Chimie, UMR CNRS 7177 4 Rue Blaise Pascal, CS 90032, 67081 Strasbourg Cedex France

2. College of Chemical and Material Engineering Quzhou University

3. Quzhou Baffil Chemical LLC Quzhou Bafeier Huaxue LLC.) Changshan Chemical Industrial Park Changshan Quzhou Zhejiang 324200, P.R. China

4. IUT Robert Schuman Université de Strasbourg 72 Route du Rhin 67411 Illkirch-Graffenstaden France

5. Université de Strasbourg Institut de Chimie, UMR CNRS 7177 4 Rue Blaise Pascal, CS 90032, 67081 Strasbourg Cedex France

6. Univ. Grenoble Alpes CNRS Grenoble INP Institute of Engineering Univ. Grenoble Alpes) LEPMI F 38000 Grenoble France

Abstract

AbstractWe describe here an immobilization method of four Keggin‐type polyoxometalates (POMs) ([H2W12O40]6−, [BW12O40]5− [SiW12O40]4−, [PW12O40]3−) by using the reaction with an ionic liquid, 1‐butyl‐3‐vinylimidazolium (BVIM) bromide. The reaction yields a hybrid material (BVIM‐POM) as a water‐insoluble salt. The chemical structure of both compounds is preserved, as indicated by infrared spectroscopy (FT‐IR), although with a reduced crystallinity (shown by X‐ray diffraction analysis) due to a decrease of water content (shown by thermogravimetric analysis). Cross polarization 1H‐31P NMR evidenced the presence of BVIM in the structure of (BVIM)3[PW12O40]. The salt is mixed with carbon powder and Nafion to prepare an ink and casted on glassy carbon electrodes. The electrochemical behavior of immobilized POMs material is preserved. The electrochemical activity for nitrite reduction is measured by cyclic voltammetry and differential electrochemical mass spectrometry (DEMS). It was observed that the reduction current of 10 mM HNO2 at pH 1 in 0.5 M Na2SO4 is enhanced in the presence of these hybrid materials. DEMS has evidenced the formation of nitrous oxide (N2O) at potentials more positive compared to the use of parent POMs in solution.

Funder

Université de Strasbourg

Publisher

Wiley

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