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Adjusting Zn 2+ diffusion kinetics and storage capability of MnOOH nanofibers for high-performance cathode of aqueous zinc-ion batteries

Chemical Engineering Journal, ISSN: 1385-8947, Vol: 473, Page: 145046
2023
  • 25
    Citations
  • 0
    Usage
  • 5
    Captures
  • 1
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    25
    • Citation Indexes
      25
  • Captures
    5
  • Mentions
    1
    • News Mentions
      1
      • 1

Most Recent News

Studies from Xiangtan University in the Area of Nanofibers Described (Adjusting Zn2+diffusion Kinetics and Storage Capability of Mnooh Nanofibers for High-performance Cathode of Aqueous Zinc-ion Batteries)

2023 SEP 28 (NewsRx) -- By a News Reporter-Staff News Editor at Nanotech Daily -- A new study on Nanotechnology - Nanofibers is now available.

Article Description

MnOOH is regarded as a product of manganese-based materials after H + insertion. There is rare study on the Zn 2+ /H + storage capability of MnOOH. Herein, MnOOH nanofibers are prepared through a one-step hydrothermal method and developed as a promising cathode. The introduction of S doping changes the crystal structure of MnOOH and is conducive to its electronic/ionic transport and structural stability, proven by density functional theory calculations and various characterizations. The reduced Zn 2+ diffusion barrier of S-doped MnOOH leads to its increased Zn 2+ storage capability in the test of rate capability, especially at large current density. The Zn 2+ /H + insertion-type mechanism of MnOOH is revealed by ex situ XRD, Raman, XPS, and SEM tests. Therefore, this optimized material delivers a high reversible capacity of 178 mAh g −1 at 0.1 A g −1, a good rate capability of 50 mAh g −1 at 3.0 A g −1, and a long cyclic life with 108 mAh g −1 at 0.5 A g −1 over 500 cycles. Moreover, the electrode still shows satisfactory rate capability and cyclic life even at the high mass loadings of 10 and 15 mg cm −2. This work proves the Zn 2+ /H + storage capability of MnOOH and its potential as a high-performance cathode in aqueous zinc ion battery.

Bibliographic Details

Lijuan Chen; Yaoyong Dong; Mengwei Han; Ting Song; Xuejun Zheng; Wenyuan He; Bei Long; Xiongwei Wu; Yong Pei; Xianyou Wang

Elsevier BV

Chemistry; Environmental Science; Chemical Engineering; Engineering

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