Supercapacitor electrode with high charge density based on boron-doped porous carbon derived from covalent organic frameworks

被引:38
|
作者
Umezawa, Shigeyuki [1 ,2 ]
Douura, Takashi [2 ]
Yoshikawa, Koji [2 ]
Takashima, Yohei [3 ]
Yoneda, Mika [1 ]
Gotoh, Kazuma [1 ]
Stolojan, Vlad [4 ]
Silva, S. Ravi P. [4 ]
Hayashi, Yasuhiko [1 ]
Tanaka, Daisuke [5 ,6 ]
机构
[1] Okayama Univ, Grad Sch Nat Sci & Technol, Okayama 7008530, Japan
[2] Seiwa Elect MFG CO Ltd, Kyoto 6100192, Japan
[3] Konan Univ, Dept Nanobiochem, Frontiers Innovat Res Sci & Technol FIRST, Chuo Ku, 7-1-20 Minatojimaminamimachi, Kobe, Hyogo 6500047, Japan
[4] Univ Surrey, Adv Technol Inst, Guildford GU2 7XH, Surrey, England
[5] Kwansei Gakuin Univ, Sch Sci & Technol, Nishinomiya, Hyogo 6691337, Japan
[6] JST PRESTO, 2-1 Gakuen, Sanda, Hyogo 6691337, Japan
关键词
Boron-doped carbon; Porous; Covalent organic framework; Supercapacitor; Electrode; NANOPOROUS CARBON; TEMPLATED CARBON; CARBONIZATION; TEMPERATURE; PERFORMANCE; REDUCTION; POLYMER; ZIF-8;
D O I
10.1016/j.carbon.2021.08.022
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
We developed a facile and unique process for preparing boron-doped porous carbon by direct carbonization of a boron-based covalent organic framework (COF-5). Boron oxides, which are formed during the carbonization of COF-5, were readily removed through water treatment of the resulting carbon to obtain boron-doped porous carbon. Thus, boron atoms were successfully incorporated into the carbon matrix. Supercapacitor electrodes made of the fabricated boron-doped carbon exhibited a specific capacitance of 15.3 mu F cm(-2) at 40 mA g(-1), which is twice that of the conventional activated carbon electrode (-6.9 mu F cm(-2)) at the same current density, owing to the presence of boron atoms in the carbon material. The supercapacitors based on boron-doped carbon demonstrated 72% capacitance retention after 10000 charge/discharge cycles. The boron-doped COF-derived carbon materials can serve as a new class of multifunctional carbon materials for energy storage devices. (C) 2021 The Authors. Published by Elsevier Ltd.
引用
收藏
页码:418 / 425
页数:8
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