Wood-Like Low-Tortuosity Thick Electrode for Micro-Redoxcapacitor with Ultrahigh Areal Energy Density and Steady Power Output

ADVANCED FUNCTIONAL MATERIALS(2024)

引用 0|浏览1
暂无评分
摘要
Conventional MXene-based thick electrodes with stacked and tortuous microstructures suffer from sluggish charge transport and low-utilization of active substances, thus a limited boost in areal energy density of the assembled micro-supercapacitors (MSCs). Herein, the duplication of wood-like microstructure is realized in MXene/Ag-nanowires (AgNWs) hybrid aerogel electrode (WL-M/A-AE) via directional freeze-drying technique. Benefitting from the uniform 3D vertically-aligned microchannels as the highways for ions transport throughout the matrix, the WL-M/A-AE with a thickness of up to 2000 mu m can achieve a 50-times higher of Cl- diffusion coefficient relative to closely restacked film electrode with the same mass loading of MXene. Furthermore, the evenly interspersed AgNWs serving as percolation network within the electrode matrix can facilitate horizontal electrons transmission between vertically-aligned loose MXene flakes, while reversibly capture/release Cl- ions via phase conversion (Ag double left right arrow AgCl) to raise the charge storage capacity of the WL-M/A-AE. Thus, when coupling with Zn anode, the assembled micro-redoxcapacitor adopting polyacrylamide/ZnCl2+NH4Cl hydrogel electrolyte can deliver an areal energy density up to 292.5 mu Wh cm(-2) in a more stable way (a smooth discharge plateau contributing 40.9% of the energy). The demonstrated hybrid thick electrode with wood-like low-tortuosity microstructure promises an effective avenue for tackling the performance bottlenecks facing traditional MSCs.
更多
查看译文
关键词
bio-inspired microstructure,low-tortuosity,micro-redoxcapacitor,MXene,thick electrode design
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要