Micron Size NaCrO 2 Particles Enable High-Loading Dry-Processed Electrode for Sodium Ion Batteries
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Le résumé fourni par la source
Dry-process fabrication using fibrillatable binder is emerging as a promising method to produce high-loading electrodes for energy storage applications, favored by its cost-efficiency and eco-friendliness. While previous studies have demonstrated the advantages of dry process over the traditional slurry method, there remains a gap in understanding how the particle size of active materials influence the mechanical and electrochemical performance of dry electrodes. In this study, four different particle size NaCrO 2 materials (Average size, S-NCO: 0.6 µm, M1-NCO 1.5 µm, M2-NCO: 4.4 µm, and L-NCO: 9.9 µm) were synthesized to investigate the effect of particle size on dry-processed high-loading electrodes. Our findings reveal that the larger micro-sized (> 4.4 µm) NCO dry films exhibit significantly improved tensile strength and electrochemical performance, primarily ascribed to the low film porosity, abundant inter-particle connection by the binder, comprehensive carbon coverage, and efficient percolation of conductive pathway. Notably, a full cell incorporated with a high loading (5.2 mAh/cm²) and high active material ratio (96.5 wt.%) L-NCO film electrode demonstrates promising cycling stability and rate capability. These results provide valuable insights regarding the design and fabrication of dry-processed electrode for future energy storage applications. Figure 1
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.
- Titre Crossref
- Micron Size NaCrO <sub>2</sub> Particles Enable High-Loading Dry-Processed Electrode for Sodium Ion Batteries
- Date Crossref
- 24/11/2025
- Éditeur
- The Electrochemical Society
- Type
- journal-article
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