High content Fe(III) electrocatalyst for the oxygen reduction and evolution reactions. Spectroscopic, electrochemical, and theoretical insights
Abstract
X-ray photoelectron spectroscopy (XPS) and X-ray absorption spectroscopy (XAS), DFT simulations, and standard electrochemical methods were used to analyse the high Fe(III) content of the synthetized Fe phthalocyanine (FePc) axially coordinated to 4-amino-3-nitropyridine (NPy). XPS analysis reveals that NPy exerts a high electron-withdrawing power on the Fe centre causing a shift to a more positive value of E0âFe(III)/(II) contrasted to FePc-CNT with a ÎE0â = [E0âFePc-NPy-CNT(III)/(II) - E0âFePc-CNT(III)/(II)] = 56 mV, which evidence the possibility to fine-tune this value. XAS and XANES analyses indicate a decreased electron density in the metal centre causing lower interactions with O2. Consecutively, the Fe2+/Fe3+ ratio changes from 0.95 to 0.51 for FePc-CNT and Fe-NPy-CNT, respectively. The electrocatalytic studies of the oxygen reduction reaction (ORR) in alkaline media, show better performances than the commonly used Pt 20% electrocatalyst in terms of overpotential (ÎE0â = [E0'onset Fe-NPy-CNT - E0'onset Pt0] = 35 mV) and similar TOF rates at 0.9 V vs. RHE (â¼1.00 eâ siteâ1 sâ1). DFT calculations show that both FePc-Py-CNT and FePc-NPy-CNT catalysts have nearly equal interactions with O2 (â0.37 eV and â0.32 eV, respectively). However, the O2 bond distance in the FePc-NPy-CNT system is 11% greater compared to the FePc-Py-CNT system explaining the superior performance of the FePc-NPy-CNT catalyst for the oxygen reduction reaction (ORR). Additionally, the interaction with H2O is stronger in the -NPy-configuration, which is consistent with the experimental results. © 2024 Hydrogen Energy Publications LLC
Más información
| Título según WOS: | High content Fe(III) electrocatalyst for the oxygen reduction and evolution reactions. Spectroscopic, electrochemical, and theoretical insights |
| Título de la Revista: | International Journal of Hydrogen Energy |
| Volumen: | 101 |
| Editorial: | Elsevier Ltd. |
| Fecha de publicación: | 2025 |
| Página de inicio: | 605 |
| Página final: | 616 |
| Idioma: | English |
| DOI: |
10.1016/j.ijhydene.2024.12.385 |
| Notas: | ISI |