Systematic Approach to the Synthesis of Cobalt-Containing Polyoxometalates for Their Application as Energy Storage Materials

Author:

Barros Ángela1ORCID,Artetxe Beñat2ORCID,Eletxigerra Unai1,Aranzabe Estibaliz1,Gutiérrez-Zorrilla Juan M.2ORCID

Affiliation:

1. Surface Chemistry and Nanotechnologies Unit, Tekniker, Iñaki Goenaga 5, 20600 Eibar, Spain

2. Departamento de Química Orgánica e Inorgánica, Facultad de Ciencia y Tecnología, Universidad del País Vasco UPV/EHU, 48080 Bilbao, Spain

Abstract

New energy storage materials are an object of study within the framework of the global energy transition. The development of renewable sources is being boosted thanks to stationary energy storage systems such as redox flow batteries (RFBs). This work reports the synthesis of the cobalt-containing Keggin-type polyoxometalates [CoW12O40]6− (CoW12) and [Co(H2O)SiW11O39]6− (CoSiW11), which have previously been shown to have applicability in RFBs. These procedures were reassessed to meet the strict requirements associated with the further implementation of RFBs, including fast and affordable synthetic procedures with high reaction yields. In contrast to the lengthy and complicated synthetic approaches published to date, the optimized synthesis reported in this work enables the isolation of the pure crystalline salt of the CoW12 anion with a 75% reduction of the time of the whole reaction procedure, eliminating tedious steps such as the recrystallization and including a 20% increased yield. The control of the stoichiometry, fine-tuning of reaction conditions, and the identification of intermediate species, as well as the acidic equilibria taking place during the process, were monitored via thermal, spectroscopic, and structural analyses. In the case of the CoSiW11 anion, its preparation was based on a simple and highly efficient procedure. Moreover, promising electrochemical properties were observed with the use of the one-pot synthetic approach, in which the stoichiometric amounts of the starting reagents are dissolved in the supporting electrolyte to be directly implemented as the electrolyte for a RFB.

Funder

Centro para el Desarrollo Tecnológico y la innovación

Basque Government

Eusko Jaurlaritza/Gobierno Vasco

Publisher

MDPI AG

Subject

General Materials Science

Reference44 articles.

1. Borrás-Almenar, J.J., Coronado, E., Müller, A., and Pope, M. (2003). Polyoxometalate Molecular Science, Springer.

2. Polyoxometalates: Formation, Structures, Principal Properties, Main Deposition Methods and Application in Sensing;Ammam;J. Mater. Chem. A,2013

3. Recent Advances in Polyoxometalate-Catalyzed Reactions;Wang;Chem. Rev.,2015

4. Chitosan Nanogels as Nanocarriers of Polyoxometalates for Breast Cancer Therapies;Artetxe;Carbohydr. Polym.,2019

5. Ruiz-Bilbao, E., Fernandez-Navarro, L., Artetxe, B., and Gutierrez-Zorrilla, J.M. (2022). Polyoxometalates: Advances, Properties, and Applications, Jenny Stanford Publishing.

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