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High-quality mesoporous graphene particles as high-energy and fast-charging anodes for lithium-ion batteries.


ABSTRACT: The application of graphene for electrochemical energy storage has received tremendous attention; however, challenges remain in synthesis and other aspects. Here we report the synthesis of high-quality, nitrogen-doped, mesoporous graphene particles through chemical vapor deposition with magnesium-oxide particles as the catalyst and template. Such particles possess excellent structural and electrochemical stability, electronic and ionic conductivity, enabling their use as high-performance anodes with high reversible capacity, outstanding rate performance (e.g., 1,138 mA h g-1 at 0.2 C or 440 mA h g-1 at 60 C with a mass loading of 1 mg cm-2), and excellent cycling stability (e.g., >99% capacity retention for 500 cycles at 2 C with a mass loading of 1 mg cm-2). Interestingly, thick electrodes could be fabricated with high areal capacity and current density (e.g., 6.1 mA h cm-2 at 0.9 mA cm-2), providing an intriguing class of materials for lithium-ion batteries with high energy and power performance.

SUBMITTER: Mo R 

PROVIDER: S-EPMC6443805 | biostudies-other | 2019 Apr

REPOSITORIES: biostudies-other

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High-quality mesoporous graphene particles as high-energy and fast-charging anodes for lithium-ion batteries.

Mo Runwei R   Li Fan F   Tan Xinyi X   Xu Pengcheng P   Tao Ran R   Shen Gurong G   Lu Xing X   Liu Fang F   Shen Li L   Xu Bin B   Xiao Qiangfeng Q   Wang Xiang X   Wang Chongmin C   Li Jinlai J   Wang Ge G   Lu Yunfeng Y  

Nature communications 20190401 1


The application of graphene for electrochemical energy storage has received tremendous attention; however, challenges remain in synthesis and other aspects. Here we report the synthesis of high-quality, nitrogen-doped, mesoporous graphene particles through chemical vapor deposition with magnesium-oxide particles as the catalyst and template. Such particles possess excellent structural and electrochemical stability, electronic and ionic conductivity, enabling their use as high-performance anodes  ...[more]

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