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Ni-based electrodes on 3D substrates: Development and performance for asymmetric supercapacitors
- Lee, Hyun Woo;
- Roh, Jong Wook;
- Kim, Kwang Ho;
- Lee, Damin
WEB OF SCIENCE
4SCOPUS
5초록
To produce high-performance supercapacitors, an easy hydrothermal method was utilized to fabricate the positive electrode employing transition metal nickel and carbonate, which exhibits good wettability and reacts well with aqueous electrolytes. In addition, electrodes without and with a 3D Ni foam substrate were compared, focusing on their surface area and electrochemical performance. The electrodes were fabricated using carbonate (CO32-) based compounds with high wettability. The Ni-2(CO3)(OH)(2) electrode without Ni foam substrates demonstrated higher electrochemical values at low current densities, while the Ni-2(CO3)(OH)(2) electrode with Ni foam substrates exhibited higher capacitance at increased current densities. As the current density increased from 3 A/g to 15 A/g, the capacitance of Ni-2(CO3)(OH)(2) without Ni foam and with Ni foam electrodes decreased by 58.1 % and 46.5 %, respectively. This indicates that higher electrochemical stability is possessed by electrodes directly deposited on Ni foam substrates. The significance of substrate selection for enhancing electrochemical performance is highlighted, with the Ni-2(CO3)(OH)(2) electrode deposited on Ni foam substrate showing a high capacitance of 101.5mAh/g at a current density of 3 A/g. Additionally, an asymmetric supercapacitor comprising Ni-2(CO3)(OH)(2) electrodes with Ni foam and graphene as positive and negative electrode, respectively, demonstrated a remarkable energy density of 22.1 W h kg(-1) and power density of 673.1 W kg(-1) at a current density of 2 A/g. Impressively, excellent cycling stability was exhibited by this asymmetric supercapacitor, with similar to 83.4 % capacitance retention after 5000 cycles.
키워드
- 제목
- Ni-based electrodes on 3D substrates: Development and performance for asymmetric supercapacitors
- 저자
- Lee, Hyun Woo; Roh, Jong Wook; Kim, Kwang Ho; Lee, Damin
- 발행일
- 2025-02-15
- 유형
- Article
- 권
- 979
- 언어
- ENG
- 출판사
- ELSEVIER SCIENCE SA
- 발행국가
- 스위스
- ISSN
- E 1873-2569
P 1572-6657