AI Article Synopsis

  • Cobalt oxide (CoO) is an attractive electrode material for supercapacitors due to its affordability, natural abundance, non-toxicity, and high capacitance.
  • Researchers developed a binder-less molybdenum doped CoO (Mo@CoO) integrated electrode using a simple electric discharge corrosion (EDC) method, which allows for direct synthesis without templates or additives.
  • The study found that the Mo@CoO based supercapacitor with a specific discharge pulse width achieved a significantly higher capacitance and quick charge/discharge capabilities, showcasing the EDC method's potential for fabricating efficient electrodes for energy storage and sensing applications.

Article Abstract

Due to its low cost, natural abundance, non-toxicity, and high theoretical capacitance, cobalt oxide (CoO) stands as a promising candidate electrode material for supercapacitors. In this study, binder-less molybdenum doped CoO (Mo@CoO) integrated electrodes were one-step fabricated using a simple electric discharge corrosion (EDC) method. This EDC method enables the direct synthesis of Mo@CoO active materials with oxygen vacancy on cobalt substrates, without any pre-made templates, conductive additives, or chemicals. Most importantly, the EDC method enables precise control over the discharge processing parameter of pulse width, which facilitates tailoring the surface morphologies of the as-prepared Mo@CoO active materials. It was found that the fabricated Mo@CoO based symmetric supercapacitor prepared by a pulse width of 24 μs (Mo@CoO-SCs24) achieved a maximum areal capacitance 36.0 mF cm (0.15 mA cm), which is 1.83 and 1.97 times higher than that of Mo@CoO-SCs12 and Mo@CoO-SCs36. Moreover, the Mo@CoO-SCs24 devices could be worked at 10 V s, which demonstrates their fast charge/discharge characteristic. These results demonstrated the significant potential of the EDC strategy for efficiency fabricating various metal oxide binder-less integrated electrodes for various applications, like supercapacitors, batteries and sensors.

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Source
http://dx.doi.org/10.3390/ma18010080DOI Listing

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