Key Laboratory of Energy Materials Chemistry, Ministry of Education, Key Laboratory of Advanced Functional Materials, Autonomous Region, Institute of Applied Chemistry , Xinjiang University , Urumqi 830046 , Xinjiang , China.
ACS Appl Mater Interfaces. 2018 Dec 26;10(51):44483-44493. doi: 10.1021/acsami.8b16442. Epub 2018 Dec 13.
It is a highly expected avenue to construct dual-carbon sodium-ion hybrid capacitors (SIHCs) using hierarchical porous carbon with interconnected pores, high accessible surface area, and disordered carbon frameworks for ameliorating the sluggish kinetics of SIHCs. In this work, a novel dual-carbon SIHCs system with homologous enhanced kinetics hierarchical porous hollow carbon spheres (HPCS) and hierarchical porous hollow carbon bowls (HPCB) as the anode and cathode is constructed for the first time. In a Na half-cell configuration, the HPCS anode synthesized through a facile one-pot in-situ template route demonstrates a superior reversible capacity as well as outstanding rate capability and cycleability, and the HPCB cathode fabricated by chemical activation of HPCS exhibits excellent capacitive behaviors. Thanks to superior properties and structures of the anode and cathode, the constructed novel dual-carbon SIHCs present an exceptionally high energy/power density (128.5 Wh kg and 11.9 kW kg), along with a long cycling lifespan with retained morphology. This study on the kinetics of enhanced dual-carbon SIHCs opens a new avenue for optimizing the microstructure of hierarchical porous carbon and constructing new type of high-performance SIHCs systems.
构建具有互连通孔、高比表面积和无序碳骨架的分层多孔碳的双碳钠离子混合电容器(SIHCs),以改善 SIHCs 的缓慢动力学,这是一条备受期待的途径。在这项工作中,首次构建了一种新型的双碳 SIHC 系统,其中包含同源增强动力学的分层多孔空心碳球(HPCS)和分层多孔空心碳碗(HPCB)作为阳极和阴极。在 Na 半电池配置中,通过简便的一锅原位模板路线合成的 HPCS 阳极表现出优异的可逆容量以及出色的倍率性能和循环稳定性,而通过 HPCS 的化学活化制备的 HPCB 阴极则表现出优异的电容行为。由于阳极和阴极的优异性能和结构,所构建的新型双碳 SIHCs 具有极高的能量/功率密度(128.5 Wh kg 和 11.9 kW kg),以及保留形态的长循环寿命。这项关于增强型双碳 SIHCs 动力学的研究为优化分层多孔碳的微观结构和构建新型高性能 SIHCs 系统开辟了新途径。