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WO2–N co-doped 2D Carbon nanosheets as multifunctional additives for enhancing the electrochemical hydrogen storage performance of Co2B.
- Source :
-
International Journal of Hydrogen Energy . Oct2024, Vol. 87, p1254-1260. 7p. - Publication Year :
- 2024
-
Abstract
- Co 2 B, with its high theoretical hydrogen storage capacity, is a potential solid-state hydrogen storage material. However, its poor cycling life limits its practical application. In this work, in order to improve the cycling stability and reversibility of hydrogen absorption and desorption of Co 2 B, we propose to use WO 2 –N–C nanosheets as dopants to mix with Co 2 B, thereby enhancing its practical performance. Two-dimensional tungsten oxide-nitrogen-carbon (WO 2 –N–C) nanosheets was syntheized via a liquid-phase approach, using a tungstenate-polydopamine precursor followed by thermal treatment. Subsequently, these WO 2 –N–C nanosheets were compounded with cobalt boride (Co 2 B) particles through ball milling at various ratios of 1%, 3%, and 5%, which were confirmed by XRD (X-ray diffraction) and SEM (Scanning Electron Microscope) methods. Employing a comprehensive suite of electrochemical analyses, including corrosion potential measurements, polarization curves, step voltammetry, and electrochemical impedance spectroscopy (EIS), we found that the incorporation of WO 2 –N–C significantly enhances the corrosion resistance and electrochemical activity of Co 2 B. Furthermore, cyclic life tests revealed that the WO 2 –N–C-doped Co 2 B composites exhibit superior discharge capacities and capacity retention rates compared to pristine Co 2 B. Notably, the 3% WO 2 –N–C-doped Co 2 B composite demonstrated the optimal electrochemical performance, achieving a maximum discharge specific capacity of 555 mAh g−1 and maintaining 82% of its initial capacity after 50 cycles. Our findings underscore the dual role of WO 2 –N–C in not only augmenting the surface electrochemical activity of Co 2 B but also providing a protective surface layer, thereby enhancing its overall electrochemical performance. • WO 2 –N–C were compounded with Co 2 B particles via ball milling at optimized ratios. • WO 2 –N–C improves the corrosion resistance and electrochemical activity of Co 2 B. • WO 2 –N–C-doped Co 2 B exhibit better discharge capacities and capacity retention rates. [ABSTRACT FROM AUTHOR]
Details
- Language :
- English
- ISSN :
- 03603199
- Volume :
- 87
- Database :
- Academic Search Index
- Journal :
- International Journal of Hydrogen Energy
- Publication Type :
- Academic Journal
- Accession number :
- 180091540
- Full Text :
- https://doi.org/10.1016/j.ijhydene.2024.09.126