| Literature DB >> 35529117 |
Xintong Ling1,2, Feng Du1,2, Yintong Zhang1,2, Yan Shen2,3, Tao Li4, Ahmed Alsaedi5, Tasawar Hayat5,6, Yong Zhou1,2,7, Zhigang Zou1,2,7.
Abstract
Metal-organic frameworks (MOFs) as versatile templates for preparing transition metal compounds has received wide attention. Benefiting from their diversified spatial structure and controllable chemical constituents, they have become a research hotspot in the field of electrocatalytic water splitting. Herein, Fe2Ni-MIL-88B MOF on nickel foam (Fe2Ni MOF/NF) has been prepared through a one-pot method growth process. Compared with Fe MOF/NF and Ni MOF/NF, the interaction between Fe3+ and Ni2+ in Fe2Ni MOF/NF accelerates the electron transfer through the oxygen of the ligand, leading to increased 3d orbital electron density of Ni, which enhances the activity of the oxygen evolution reaction (OER) in alkaline solution. Fe2Ni MOF/NF provides a current density of 10 mA cm-2 at a low overpotential of 222 mV, and its Tafel slope is also very small, reaching 42.39 mV dec-1. The success of the present Fe2Ni MOF/NF catalyst is attributed to the abundant active centers, the bimetallic clusters Fe2Ni-MIL-88B, the positive coupling effect between Ni and Fe metal ions in the MOF, and synergistic effect between the MOF and NF. Besides, Fe2Ni MOF/NF possesses excellent stability over 50 h of continuous operation, providing feasibility for commercial use. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35529117 PMCID: PMC9073369 DOI: 10.1039/c9ra07499f
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1Fe2Ni-MIL-88B MOF on nickel foam (Fe2Ni MOF/NF) has been prepared through a one-pot method growth process.
Fig. 1XRD patterns of Fe2Ni MOF/NF, Fe MOF/NF, and Ni MOF/NF.
Fig. 2SEM images of (a) Ni MOF/NF, (c) Fe MOF/NF and (e) Fe2Ni MOF/NF, (b, d, and f) TEM images of Ni MOF/NF, Fe MOF/NF, and Fe2Ni MOF/NF. (Inset of b, d, and f): SAED pattern of Ni MOF/NF, Fe MOF/NF, and Fe2Ni MOF/NF. (g) SEM image of the Fe2Ni MOF/NF. EDS mapping images of (h) Fe and (i) Ni for the Fe2Ni MOF.
Fig. 3High-resolution XPS spectra of (a) Fe 2p and (b) Ni 2p of the as-prepared samples. (c) The interaction between Ni and Fe during the OER processes.
Fig. 4(a) CV curves, (b) Tafel plots and (c) Nyquist plots of Fe2Ni MOF/NF, Ni MOF/NF, Fe MOF/NF and blank NF. (d) Chronopotentiometric durability of Fe2Ni MOF/NF at 10 mA cm−2 for 50 h. (Insets of d) LSV curves of Fe2Ni MOF/NF before and after the long-term test.
Fig. 5(a) LSV curves, (b) Tafel plots, and (c) Nyquist plots of Fe : Ni = 7 : 3, Fe : Ni = 5 : 5 and Fe : Ni = 3 : 7. (d) Overpotentials of Fe MOF, Ni MOF and FeNi MOF at 10 mA cm−2vs. RHE.