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Super P Carbon Modified Lithium Anode for High‐Performance Li−O 2 Batteries
Author(s) -
Wang Jiaqi,
Liu Junxiang,
Cai Yichao,
Cheng Fangyi,
Niu Zhiqiang,
Chen Jun
Publication year - 2018
Publication title -
chemelectrochem
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.182
H-Index - 59
ISSN - 2196-0216
DOI - 10.1002/celc.201800289
Subject(s) - anode , overpotential , materials science , electrolyte , polarization (electrochemistry) , lithium (medication) , composite number , chemical engineering , electrochemistry , composite material , chemistry , electrode , medicine , engineering , endocrinology
Rechargeable Li−O 2 batteries represent a highly attractive battery technology, owing to a high theoretical energy density of 3500 Wh kg −1 , but they suffer from large charging polarization and lithium anode degradation on cycling. Herein, we report a Li−O 2 battery system with reduced polarization and a long lifespan, which is realized by using a novel Li@Super P composite anode integrated with lithium iodide in ether‐based electrolyte. Coating a Super P carbon layer, with an optimal thickness of approximately 30 μm, onto the lithium anode results in a lowered interface impedance and a decreased Li depositing/stripping overpotential (<15 mV) over 300 cycles at 0.3 mA cm −2 . The Li−O 2 batteries assembled with the Li@Super P anode and LiI additive could mitigate the detrimental shuttling effect of I 3 − and deliver a high reversible capacity of 1000 mAh g −1 with a median charge voltage lower than 3.3 V after 50 cycles. This study provides a simple yet effective way to protect the lithium anode and design high‐performance Li−O 2 batteries.