High-selectivity room-temperature partial oxidation of methane to methanol enabled by electrochemical oxygen promotion on IrO2 catalysts

  • Kim, Cheolho
  • Lee, Jaehyun
  • Lee, Sungwoo
  • Jung, Wonho
  • Min, Heewon
  • ... Lee, Jinwon
  • 외 5명
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초록

The electrochemical conversion of methane into value-added chemicals offers a sustainable solution for utilizing abundant methane resources, yet achieving high selectivity for partial oxidation remains challenging. Here we demonstrate that employing an IrO2 catalyst with CO32- as an oxygen source enables efficient and selective electrochemical methane-to-methanol conversion at room temperature. Adsorption and dissociation of CO32- on IrO2(110) surfaces generates abundant active oxygen species, facilitating methane activation through surface-bound methoxy intermediates and thereby substantially enhancing methanol selectivity. Optimal conditions for methanol production are achieved within a potential range where interference from the competing oxygen evolution reaction is minimized, reaching a maximum methanol production rate of approximately 11.1 mmol gcat-1 h-1 at 1.50 versus the reversible hydrogen electrode under continuous operation. Process modelling indicates an approximately 50% reduction in carbon emissions compared to conventional methanol production methods, emphasizing the sustainability and practical potential of this electrochemical methane oxidation approach.

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제목
High-selectivity room-temperature partial oxidation of methane to methanol enabled by electrochemical oxygen promotion on IrO2 catalysts
저자
Kim, CheolhoLee, JaehyunLee, SungwooJung, WonhoMin, HeewonChoi, JiyunKim, SungwonKim, Yong TaeLee, JinwonYoo, Jong SukMoon, Jun Hyuk
DOI
10.1038/s41929-025-01363-0
발행일
2025-07
유형
Article
저널명
Nature Catalysis
8
7
페이지
688 ~ 696