“…Secondly, heterostructures can improve the charge transfer kinetics of MXene electrodes. 263 MXenes have high electrical conductivity but sometimes suffer from limited ion diffusion due to their interlayer spacing. By introducing heterostructures, the ion diffusion pathways can be optimized, facilitating faster ion transport and reducing the resistance at the electrode–electrolyte interface.…”
Section: Exploring Strategies For Engineering the Electronic Structur...mentioning
Supercapacitors are widely recognized as a favorable option for energy storage due to their higher power density compared to batteries, despite their lower energy density. However, to meet the growing...
“…Secondly, heterostructures can improve the charge transfer kinetics of MXene electrodes. 263 MXenes have high electrical conductivity but sometimes suffer from limited ion diffusion due to their interlayer spacing. By introducing heterostructures, the ion diffusion pathways can be optimized, facilitating faster ion transport and reducing the resistance at the electrode–electrolyte interface.…”
Section: Exploring Strategies For Engineering the Electronic Structur...mentioning
Supercapacitors are widely recognized as a favorable option for energy storage due to their higher power density compared to batteries, despite their lower energy density. However, to meet the growing...
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