An ultra-long life, high-performance, flexible Li-CO2 battery based on multifunctional carbon electrocatalysts

被引:89
|
作者
Song, Li [1 ,2 ]
Hu, Chuangang [2 ,6 ]
Xiao, Ying [3 ]
He, Jianping [1 ]
Lin, Yi [4 ]
Connell, John W. [5 ]
Dai, Liming [2 ,6 ]
机构
[1] Nanjing Univ Aeronaut & Astronaut, Jiangsu Key Lab Mat & Technol Energy Convers, Coll Mat Sci & Technol, Nanjing 210016, Peoples R China
[2] Case Western Reserve Univ, Dept Macromol Sci & Engn, Ctr Adv Sci & Engn Carbon Case Carbon 4, Cleveland, OH 44106 USA
[3] Beijing Univ Chem Technol, Coll Energy, State Key Lab Organ Inorgan Composites, BUCT CWRU Int Joint Lab, Beijing, Peoples R China
[4] Natl Inst Aerosp, 100 Explorat Way, Hampton, VA 23666 USA
[5] NASA, Langley Res Ctr, Adv Mat & Proc Branch, Hampton, VA 23681 USA
[6] Univ New South Wales, Sch Chem Engn, UNSW CWRU Int Joint Lab, Sydney, NSW, Australia
基金
中国国家自然科学基金;
关键词
Li-CO2; battery; N; S-doped carbon nanotubes; Wearable electronics; Quasi-solidus battery; Superior stability; OXYGEN REDUCTION; LITHIUM-CO2; BATTERY; GRAPHENE; SULFUR; ENERGY; NANOPARTICLES; CAPACITY;
D O I
10.1016/j.nanoen.2020.104595
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Integrating CO2 utilization and renewable energy delivery/storage, the rechargeable Li-CO2 battery has been considered as a promising candidate for next-generation secondary batteries. However, high-performance catalyst(s) for efficient formation and decomposition of the discharge product, Li2CO3, are an imperative part of a Li-CO2 battery. The development of flexible Li-CO2 batteries extends their applications into compliant and wearable devices/systems, but at the same time imposes a big challenge for battery fabrication and lifetime enhancement. In this study, a rechargeable quasi-solidus flexible Li-CO2 battery was designed and fabricated using highly active N,S-doped carbon nanotubes (N,S-doped CNTs) as the cathode catalyst, and a smart polymer gel as the flexible electrolyte. This newly-developed flexible Li-CO2 battery exhibited a capacity as high as 23560 mAh g(-1) based on the catalyst mass and an ultra-long lifetime of up to 538 cycles with excellent mechanical flexibility. This work provides a platform for the design and development of high-performance flexible Li-CO2 batteries from low-cost, earth-abundant, carbon-based multifunctional cathode catalysts.
引用
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页数:7
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