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In Situ High-Level Nitrogen Doping into Carbon Nanospheres and Boosting of Capacitive Charge Storage in Both Anode and Cathode for a High-Energy 4.5 V Full-Carbon Lithium-Ion Capacitor

Authors :
Hao Bin Wu
Jihui Gao
Fei Sun
Xiaoyan Liu
Lijie Wang
Hexing Li
Yunfeng Lu
Source :
Nano Letters. 18:3368-3376
Publication Year :
2018
Publisher :
American Chemical Society (ACS), 2018.

Abstract

To circumvent the imbalances of electrochemical kinetics and capacity between Li+ storage anodes and capacitive cathodes for lithium-ion capacitors (LICs), we herein demonstrate an efficient solution by boosting the capacitive charge-storage contributions of carbon electrodes to construct a high-performance LIC. Such a strategy is achieved by the in situ and high-level doping of nitrogen atoms into carbon nanospheres (ANCS), which increases the carbon defects and active sites, inducing more rapidly capacitive charge-storage contributions for both Li+ storage anodes and PF6– storage cathodes. High-level nitrogen-doping-induced capacitive enhancement is successfully evidenced by the construction of a symmetric supercapacitor using commercial organic electrolytes. Coupling a pre-lithiated ANCS anode with a fresh ANCS cathode enables a full-carbon LIC with a high operating voltage of 4.5 V and high energy and power densities thereof. The assembled LIC device delivers high energy densities of 206.7 and 115.4 W...

Details

ISSN :
15306992 and 15306984
Volume :
18
Database :
OpenAIRE
Journal :
Nano Letters
Accession number :
edsair.doi.dedup.....34a67b468342d70070eb4a7d1abb6933
Full Text :
https://doi.org/10.1021/acs.nanolett.8b00134