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December 2, 2010Energy & Environmental Science440 citations

Highly active cobalt phosphate and borate based oxygen evolving catalysts operating in neutral and natural waters

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AEA.J. EssweinYSYogesh SurendranathSRSteven Y. Reece

Key Points

  • To evaluate the performance of cobalt-based oxygen evolving catalysts (Co-OEC) for water oxidation in various neutral pH environments.
  • Functionalization of high surface area electrodes with Co-OEC from different electrolytes (phosphate, methylphosphonate, borate)
  • Assessment of current density and overpotential during water oxidation at various pH levels
  • Testing of catalyst performance in natural water sources, including the Charles River and seawater
  • Achieved a current density of 100 mA cm−2 for water oxidation with Co-OEC from methylphosphonate at 442 mV overpotential
  • Co-OEC from borate electrolyte achieved 363 mV overpotential under the same current density
  • Catalyst remained active in natural water environments with near-neutral pH, suggesting practical applications for renewable energy systems.

Abstract

A high surface area electrode is functionalized with cobalt-based oxygen evolving catalysts (Co-OEC = electrodeposited from pH 7 phosphate, Pi, pH 8.5 methylphosphonate, MePi, and pH 9.2 borate electrolyte, Bi). Co-OEC prepared from MePi and operated in Pi and Bi achieves a current density of 100 mA cm−2 for water oxidation at 442 and 363 mV overpotential, respectively. The catalyst retains activity in near-neutral pH buffered electrolyte in natural waters such as those from the Charles River (Cambridge, MA) and seawater (Woods Hole, MA). The efficacy and ease of operation of anodes functionalized with Co-OEC at appreciable current density together with its ability to operate in near neutral pH buffered natural water sources bodes well for the translation of this catalyst to a viable renewable energy storage technology.

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Cite This Study

Esswein et al. (2010) studied this question.

synapsesocial.com/papers/6a0c7d313b45b6e808887b06https://doi.org/10.1039/c0ee00518e
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