4.7 Article

Rational design and synthesis of hydrotalcite-like α-Co(OH)2 nanoflakes for extrinsic pseudocapacitive electrodes with superb cycling stability

期刊

JOURNAL OF ENERGY STORAGE
卷 38, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.est.2021.102579

关键词

alpha-Co(OH)(2); Cycling stability; Extrinsic pseudocapacitance; Supercapacitor

资金

  1. Scientific Research Foundation of Yunnan Provincial Education Department [2019J0035]
  2. Science and Technology Planning Project of Yunnan Provincial Science and Technology Department [2019FD047]
  3. Kunming University of Science and Technology (KUST) [KKKP201732014]
  4. Analysis and Testing Foundation of KUST [2018T20170059]

向作者/读者索取更多资源

Chiffon-like and hydrotalcite-like alpha-Co(OH)2 nanoflakes were synthesized for extrinsic pseudocapacitive electrode, exhibiting high capacitance, excellent rate capability, and superb cycling stability. The study also highlights the importance of morphology and size design in enhancing the electrochemical energy-storage performance.
Cycling stability and specific capacitance are two of important performance parameters for pseudocapacitive electrodes under frequent charging and discharging. Herein, we present a facile solvothermal approach to rationally design and fabricate chiffon-like and hydrotalcite-like alpha-Co(OH)(2) nanoflakes for extrinsic pseudocapacitive electrode, which exhibits linear galvanostatic discharge behavior and superior charge-storage performance, including high capacitance of 475 F g(-1) at 1 A g(-1), excellent rate capability and superb cycling stability with capacitance retention of 93.9% after 10000 cycles at 10 A g(-1). The superior performance is mostly attributed to the good electrical conductivity and stable microstructure of the hydrotalcite-like alpha-Co(OH)(2) nanoflakes and the abundant redox active sites on the chiffon-like nanoflakes with short and facile electron transport. In addition, other alpha-Co(OH)(2) samples with different morphologies and size as contrast are prepared and discussed, indicating that the morphology/size design and optimization of the alpha-Co(OH)(2) could greatly improve the electrochemical energy-storage performance. The findings demonstrate that the chiffon-like and hydrotalcite-like alpha-Co(OH)(2) nanoflakes have a great practical application potential in long-life and highperformance supercapacitors. This study also presents a facile way to design and prepare nanoflake-like materials with adjustable lateral size and thickness from spherical morphology consisting of nanoflakes.

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