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Encapsulating Nickel-Iron Alloy Nanoparticles in a Polysilazane-Derived Microporous Si-C-O-N-Based Support to Stimulate Superior OER Activity.
Miled, Marwan Ben; Fradin, Marina; Benbakoura, Nora; Mazière, Laetitia; Rousseau, Julie; Bouzid, Assil; Carles, Pierre; Iwamoto, Yuji; Masson, Olivier; Habrioux, Aurélien; Bernard, Samuel.
Afiliação
  • Miled MB; CNRS, IRCER, UMR 7315, Univ. Limoges, 12 rue Atlantis, F-87068, Limoges.
  • Fradin M; CNRS, IRCER, UMR 7315, Univ. Limoges, 12 rue Atlantis, F-87068, Limoges.
  • Benbakoura N; CNRS, IC2MP, UMR 7285, Univ. Poitiers, 4 Rue Michel Brunet, F-86073.
  • Mazière L; CNRS, IC2MP, UMR 7285, Univ. Poitiers, 4 Rue Michel Brunet, F-86073.
  • Rousseau J; CNRS, IC2MP, UMR 7285, Univ. Poitiers, 4 Rue Michel Brunet, F-86073.
  • Bouzid A; CNRS, IRCER, UMR 7315, Univ. Limoges, 12 rue Atlantis, F-87068, Limoges.
  • Carles P; CNRS, IRCER, UMR 7315, Univ. Limoges, 12 rue Atlantis, F-87068, Limoges.
  • Iwamoto Y; Graduate School of Engineering, Department of Life Science and Applied Chemistry, Nagoya Institute of Technology, Gokiso-cho, Showa-ku, Nagoya, 466-8555, Aichi, Japan.
  • Masson O; CNRS, IRCER, UMR 7315, Univ. Limoges, 12 rue Atlantis, F-87068, Limoges.
  • Habrioux A; CNRS, IC2MP, UMR 7285, Univ. Poitiers, 4 Rue Michel Brunet, F-86073.
  • Bernard S; CNRS, IRCER, UMR 7315, Univ. Limoges, 12 rue Atlantis, F-87068, Limoges.
ChemSusChem ; : e202400561, 2024 Jun 22.
Article em En | MEDLINE | ID: mdl-39110122
ABSTRACT
The in situ confinement of nickel (Ni)-iron (Fe) nanoparticles (NPs) in a polymer-derived microporous silicon carboxynitride (Si-C-O-N)-based support is investigated to stimulate superior oxygen evolution reaction (OER) activity in an alkaline media. Firstly, we consider a commercial polysilazane (PSZ) and Ni and Fe chlorides to be mixed in N,N-dimethylformamide (DMF) and deliver after overnight solvent reflux a series of Ni-Fe organosilicon coordination polymers. The latter are then heat-treated at 500 °C in flowing argon to form the title compounds. By considering a Ni Fe ratio of 1.5, face centred cubic (fcc) NixFey alloy NPs with a size of 15-30 nm are in situ generated in a porous Si-C-O-N-based matrix displaying a specific surface area (SSA) as high as 237 m2 ⋅ g-1. Hence, encapsulated NPs are rendered accessible to promote electrocatalytic water oxidation. An OER overpotential as low as 315 mV at 10 mA ⋅ cm-2 is measured. This high catalytic performance (considering that the metal mass loading is as low as 0.24 mg cm-2) is rather stable as observed after an activation step; thus, validating our synthesis approach. This is clearly attributed to both the strong NP-matrix interaction and the confinement effect of the matrix as highlighted through post mortem microscopy observations.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article