金属有机骨架
纳米反应器
材料科学
纳米技术
金属
化学工程
电极
制作
氧还原反应
储能
纳米结构
作者
Boman Li,Yawei Li,Wanchang Feng,Luxu Wang,Yecan Pi,Wenhua Li,Mohsen Shakouri,Bin He,Zheng Liu,Huan Pang
标识
DOI:10.1021/acsenergylett.6c00458
摘要
Rechargeable sodium–chlorine (Na–Cl 2 ) batteries have attracted attention for next-generation energy storage. However, their application is hindered by poor cycling stability, primarily caused by sluggish reaction kinetics and uneven NaCl nucleation. Herein, we prepared a series of polarized metal organic frameworks (MOFs) and verified that polar groups anchored on the penetrated porous skeletons can act as confined nanoreactors, enhancing the Cl – /Na + adsorption capability and simultaneously repulsing the formed Cl 2, finally boosting the uniform deposition/exfoliation of NaCl nanocrystals and reversible reaction between NaCl and Cl 2 . The Na–Cl 2 @UiO-66-SO 3 H battery demonstrates a polarization of 0.27 V, along with cycling for 600 cycles at 10,000 mA g –1, and even operates at a current density of 20,000 mA g –1 . Moreover, this sodium–chlorine battery shows performance at low temperature, increased areal capacity, and capacity scaling in large-format pouch cells.
科研通智能强力驱动
Strongly Powered by AbleSci AI