材料科学
电池(电)
碳纳米管
纳米技术
催化作用
储能
化学工程
有机自由基电池
电极
纤维
双功能
电化学
复合材料
有机化学
功率(物理)
化学
物理化学
工程类
物理
量子力学
作者
Xuelian Li,Jingwen Zhou,Junxiang Zhang,Matthew Li,Xuanxuan Bi,Tongchao Liu,Tao He,Jianli Cheng,Fan Zhang,Yongpeng Li,Xiaowei Mu,Jun Lü,Bin Wang
标识
DOI:10.1002/adma.201903852
摘要
Abstract The Li–CO 2 battery is a promising energy storage device for wearable electronics due to its long discharge plateau, high energy density, and environmental friendliness. However, its utilization is largely hindered by poor cyclability and mechanical rigidity due to the lack of a flexible and durable catalyst electrode. Herein, flexible fiber‐shaped Li–CO 2 batteries with ultralong cycle‐life, high rate capability, and large specific capacity are fabricated, employing bamboo‐like N‐doped carbon nanotube fiber (B‐NCNT) as flexible, durable metal‐free catalysts for both CO 2 reduction and evolution reactions. Benefiting from high N‐doping with abundant pyridinic groups, rich defects, and active sites of the periodic bamboo‐like nodes, the fabricated Li–CO 2 battery shows outstanding electrochemical performance with high full‐discharge capacity of 23 328 mAh g −1 , high rate capability with a low potential gap up to 1.96 V at a current density of 1000 mA g −1 , stability over 360 cycles, and good flexibility. Meanwhile, the bifunctional B‐NCNT is used as the counter electrode for a fiber‐shaped dye‐sensitized solar cell to fabricate a self‐powered fiber‐shaped Li–CO 2 battery with overall photochemical–electric energy conversion efficiency of up to 4.6%. Along with a stable voltage output, this design demonstrates great adaptability and application potentiality in wearable electronics with a breath monitor as an example.
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