Ultrahigh Energy Density and Ultrafast Response in Symmetric Microsupercapacitors with 3D Bicontinuous Pseudocapacitance

被引:0
|
作者
Kim, Min Ji [1 ,2 ]
Kim, Minjeong [1 ]
Sohn, Won Bae [3 ]
Kang, Joonhyun [1 ]
Kim, Woong [2 ]
Kang, Jin Gu [1 ,4 ]
机构
[1] Korea Inst Sci & Technol KIST, Nanophoton Res Ctr, Seoul 02792, South Korea
[2] Korea Univ, Dept Mat Sci & Engn, Seoul 02841, South Korea
[3] Korea Photon Technol Inst, Opt Lens Mat Res Ctr, Gwangju 61007, South Korea
[4] Korea Univ Sci & Technol UST, KIST Sch, Nanosci & Technol, Seoul 02792, South Korea
关键词
3D bicontinuous pseudocapacitance; energy density; line filtering; response kinetics; symmetric microsupercapacitors; MICRO-SUPERCAPACITORS; HIGH-FREQUENCY; VOLUMETRIC ENERGY; AREAL CAPACITANCE; PERFORMANCE; ELECTRODES; FILMS; POWER; STORAGE; NETWORK;
D O I
10.1002/aenm.202402322
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
Achieving a high storage capability while maintaining good rate performance using symmetric microsupercapacitors (MSCs) remains challenging. Herein, a 3D symmetric MSC based on interdigitated 3D bicontinuous pseudocapacitive electrodes is proposed to simultaneously attain ultrahigh energy density and ultrafast response. The 3D electrodes comprise electrolytically active MnO2 layers conformally coated onto a 3D periodic porous Ni current collector. In this architecture, the low conductivity of MnO2 can be compensated by efficient charge transport and facile charge transfer without compromising its high capacitance. The 3D MSC with a 1-V window exhibits an ultrahigh volumetric energy density of 15.8 mWh cm-3 with a high power density of 4.95 W cm-3, outperforming all previously reported MnO2-based symmetric MSCs. Benefitting from its ultrafast response, the 3D MSC exhibits superiority in terms of the phase angle (-66 degrees), areal capacitance (1400 mu F cm-2), and time constant (0.6 ms) at an alternating-current (AC) frequency of 120 Hz. By using the 3D MSC as a line-filtering capacitor in a real circuit, the AC signal is effectively smoothed with small residual ripples (approximate to 1.35 mV). Additionally, the device achieves excellent performance in an all-solid-state form. A symmetric 3D microsupercapacitor with ultrahigh energy density and ultrafast response is fabricated. The electrodes comprise a 3D architectured Ni current collector conformally coated with pseudocapacitive MnO2 layers. The device exhibited exceptional volumetric energy density and volumetric power density, outperforming most previously reported oxide-based symmetric microsupercapacitors. Additionally, the ultrafast kinetics of the device resulted in excellent AC line-filtering performance. image
引用
收藏
页数:15
相关论文
共 50 条
  • [21] Directional Freezing Assisted 3D Printing to Solve a Flexible Battery Dilemma: Ultrahigh Energy/Power Density and Uncompromised Mechanical Compliance
    Li, Xiaolong
    Ling, Shangwen
    Zeng, Li
    He, Hanna
    Liu, Xingang
    Zhang, Chuhong
    ADVANCED ENERGY MATERIALS, 2022, 12 (14)
  • [22] 3D Printing of Carbon Nanotubes-Based Microsupercapacitors
    Yu, Wei
    Zhou, Han
    Li, Ben Q.
    Ding, Shujiang
    ACS APPLIED MATERIALS & INTERFACES, 2017, 9 (05) : 4597 - 4604
  • [23] Atomic layer deposition of titanium oxide and nitride on vertically aligned carbon nanotubes for energy dense 3D microsupercapacitors
    Zhang, Hayley
    Wang, Ben
    Brown, Billyde
    APPLIED SURFACE SCIENCE, 2020, 521
  • [24] Ultrahigh Energy and Power Densities of d-MXene-Based Symmetric Supercapacitors
    Mustafa, Beenish
    Lu, Wengang
    Wang, Zhiyuan
    Lian, Fuzhuo
    Shen, Andy
    Yang, Bing
    Yuan, Jun
    Wu, Chang
    Liu, Yangbowen
    Hu, Weiwei
    Wang, Lei
    Yu, Geliang
    NANOMATERIALS, 2022, 12 (19)
  • [25] Direct Conversion of Fe2O3 to 3D Nanofibrillar PEDOT Microsupercapacitors
    Diao, Yifan
    Lu, Yang
    Yang, Haoru
    Wang, Hongmin
    Chen, Haozhe
    D'Arcy, Julio M.
    ADVANCED FUNCTIONAL MATERIALS, 2020, 30 (32)
  • [26] Laser-directed energy deposition to achieve high-aspect-ratio micropillar arrays for 3D interdigitated microsupercapacitors
    Tran, Chau Van
    Do, Huan Minh
    Ryu, Changyoung
    Kim, Hakgae
    In, Jung Bin
    ENERGY STORAGE MATERIALS, 2024, 67
  • [27] Toward High Power-High Energy Sodium Cathodes: A Case Study of Bicontinuous Ordered Network of 3D Porous Na3(VO)2(PO4)2F/rGO with Pseudocapacitance Effect
    Zhang, Zhibo
    Chen, Zhihao
    Mai, Zhaoxu
    Peng, Kunyao
    Deng, Qinglin
    Bayaguud, Aruuhan
    Zhao, Pengfei
    Fu, Yanpeng
    Yu, Yan
    Zhu, Changbao
    SMALL, 2019, 15 (14)
  • [28] Scalable 2D Hierarchical Porous Carbon Nanosheets for Flexible Supercapacitors with Ultrahigh Energy Density
    Yao, Lei
    Wu, Qin
    Zhang, Peixin
    Zhang, Junmin
    Wang, Dongrui
    Li, Yongliang
    Ren, Xiangzhong
    Mi, Hongwei
    Deng, Libo
    Zheng, Zijian
    ADVANCED MATERIALS, 2018, 30 (11)
  • [29] Interdigital electrodes of air@NiO porous nanoshells for high performance microsupercapacitors by thermally-assisted 3D printing
    Yu, Wei
    Gao, Mengqiu
    Li, Ben Q.
    Liang, Jin
    Ding, Shujiang
    NANOTECHNOLOGY, 2020, 31 (37)
  • [30] 3D printing technologies for electrochemical energy storage
    Zhang, Feng
    Wei, Min
    Viswanathan, Vilayanur V.
    Swart, Benjamin
    Shao, Yuyan
    Wu, Gang
    Zhou, Chi
    NANO ENERGY, 2017, 40 : 418 - 431