4.8 Article

Hierarchical micro-reactor as electrodes for water splitting by metal rod tipped carbon nanocapsule self-assembly in carbonized wood

期刊

APPLIED CATALYSIS B-ENVIRONMENTAL
卷 264, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.apcatb.2019.118536

关键词

Metal rod tipped carbon nanocapsules; Carbonized wood; Microfluidic electrodes; Oxygen evolution reaction

资金

  1. Swedish Research Council [2017-00935, 2017-05349]
  2. Swedish Energy Agency
  3. Knut & Alice Wallenberg Foundation
  4. European Research Council Advanced Grant [742733]
  5. National Basic Research Program of China (973 Program) [2014CB239402]
  6. Wallenberg Foundation Postdoctoral Scholarship Program [KAW 2012.0359]
  7. CALIPSOp1us European Union
  8. DESY strategic fund (DSF) Investigation of processes for spraying and spray-coating of hybrid cellulose-based nanostructures
  9. Vinnova [2017-05349] Funding Source: Vinnova
  10. Swedish Research Council [2017-05349] Funding Source: Swedish Research Council

向作者/读者索取更多资源

Materials design of efficient electrochemical micro-reactors is challenging, although hierarchically structured, self-standing electrodes with catalyst arrays offer promise. Herein, catalyst function in compact micro-reactor electrodes is designed by nanostructural tailoring of carbonized wood for efficient water splitting. Specifically, NiFe rod tipped, N-doped graphitic carbon nanocapsule arrays are self-assembled in hierarchical wood, and the benefit of this unique presentation and its promotive effect on accessibility of the catalyst surfaces is apparent. This report also comprises the first wood based micro-reactor electrodes for electrocatalytic water oxidation demonstrating excellent performance. The overpotential for oxygen evolution reaction was as low as 180 mV for 10 mA cm(-2) current density and TOFredox was high at a level of 5.8 s(-1) (at 370 mV overpotential). This hierarchical electrode can also work as bifunctional catalyst (both as anodic and as cathodic electrode) for total water splitting with a cell potential of 1.49 V for 10 mA cm(-2) in alkaline solution, suggestive of their potential also in other electrochemical applications.

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