4.7 Article

Fabrication of a 1D Mn3O4 nano-rod electrode for aqueous asymmetric supercapacitors and capacitive deionization

Journal

INORGANIC CHEMISTRY FRONTIERS
Volume 6, Issue 2, Pages 355-365

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c8qi00993g

Keywords

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Funding

  1. National Natural Science Foundation of China [41672236]
  2. China Postdoctoral Science Foundation [2017M620801]
  3. State Key Joint Laboratory of Environment Simulation and Pollution Control [15Y03ESPCT]
  4. Tsinghua University Initiative Scientific Research Program [20151080353]
  5. Young Elite Scientist Sponsorship Program by CAST [2015QNRC001]
  6. Thousand Talents Plan for Young Professionals

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One-dimensional manganese oxide presents distinctly stable properties and exhibits excellent electrochemical performance in neutral aqueous solution as a supercapacitor. Here, we successfully prepare a variety of Mn3O4 nano-rods with different micro-morphologies and nano-structures and show that 107.5 nm Mn3O4 long-rod electrodes exhibit a high specific capacitance of 136.5 F g(-1) at a current density of 0.1 A g(-1). An aqueous asymmetric supercapacitor device with a maximum work voltage of 1.8 V and high power density is fabricated by using Mn3O4 long-rods as the positive electrode and reduced graphene oxide as the negative electrode. Moreover, this asymmetric capacitor device displays a remarkable electro-adsorption performance, with a mean rate of 0.90 mg g(-1) min(-1) of Na2SO4 solution and an initial concentration of 500 mg L-1, for capacitive deionization. Furthermore, during the desorption processes, waste energy can power one red LED indicator efficiently for at least 5 min, realizing effective energy re-utilization.

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