Scalable Synthesis and Electrocatalytic Performance of Highly Fluorinated Covalent Organic Frameworks for Oxygen Reduction
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2023-10-16
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Wiley VCH
Resumen
Abstract: In this study, we present a novel approach for the synthesis of covalent organic frameworks (COFs) that
overcomes the common limitations of non-scalable solvothermal procedures. Our method allows for the roomtemperature
and scalable synthesis of a highly fluorinated DFTAPB-TFTA-COF, which exhibits intrinsic hydrophobicity.
We used DFT-based calculations to elucidate the role of the fluorine atoms in enhancing the crystallinity of
the material through corrugation effects, resulting in maximized interlayer interactions, as disclosed both from PXRD
structural resolution and theoretical simulations. We further investigated the electrocatalytic properties of this material
towards the oxygen reduction reaction (ORR). Our results show that the fluorinated COF produces hydrogen peroxide
selectively with low overpotential (0.062 V) and high turnover frequency (0.0757 s 1) without the addition of any
conductive additives. These values are among the best reported for non-pyrolyzed and metal-free electrocatalysts.
Finally, we employed DFT-based calculations to analyse the reaction mechanism, highlighting the crucial role of the
fluorine atom in the active site assembly. Our findings shed light on the potential of fluorinated COFs as promising
electrocatalysts for the ORR, as well as their potential applications in other fields.
Descripción
Funding for this research was provided by:
Ministerio de Ciencia e Innovación (PID2019-106268GB-C33, TED2021-129886BC43, PID2019-106268GB-C32, TED2021-129886BC42, PID2022-138470NB-100, PID2022-138908NB-C33)
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Citación
Angew. Chem. Int. Ed. 2023, 62, e202313940
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