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The 2020 plasma catalysis roadmap

Journal of Physics D Applied Physics · 2020 · Vol. 53(44) · pp. 443001–443001
Annemie BogaertsXin TuJ. Christopher WhiteheadGabriele CentiLeon LeffertsOlivier GuaitellaFederico Azzolina-JuryHyun‐Ha KimAnthony B. MurphyWilliam F. SchneiderTomohiro NozakiJason C. HicksAntoine RousseauFrédéric ThévenetAhmed KhacefMaria L. Carreon

Abstract

Abstract Plasma catalysis is gaining increasing interest for various gas conversion applications, such as CO 2 conversion into value-added chemicals and fuels, CH 4 activation into hydrogen, higher hydrocarbons or oxygenates, and NH 3 synthesis. Other applications are already more established, such as for air pollution control, e.g. volatile organic compound remediation, particulate matter and NO x removal. In addition, plasma is also very promising for catalyst synthesis and treatment. Plasma catalysis clearly has benefits over ‘conventional’ catalysis, as outlined in the Introduction. However, a better insight into the underlying physical and chemical processes is crucial. This can be obtained by experiments applying diagnostics, studying both the chemical processes at the catalyst surface and the physicochemical mechanisms of plasma-catalyst interactions, as well as by computer modeling. The key challenge is to design cost-effective, highly active and stable catalysts tailored to the plasma environment. Therefore, insight from thermal catalysis as well as electro- and photocatalysis is crucial. All these aspects are covered in this Roadmap paper, written by specialists in their field, presenting the state-of-the-art, the current and future challenges, as well as the advances in science and technology needed to meet these challenges.

Catalytic Processes in Materials SciencePlasma Applications and DiagnosticsAmmonia Synthesis and Nitrogen ReductionCatalysisOxygenateNanotechnologyNonthermal plasmaChemistryEnvironmental remediationBiochemical engineeringPlasmaMaterials scienceOrganic chemistry

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • European Commission
  • Universiteit Antwerpen
  • Horizon 2020 Framework Programme
  • Air Force Office of Scientific Research
  • H2020 Marie Skłodowska-Curie Actions
Citations
613
FWCI
28.96
field-weighted impact
References
168
Percentile
100%
vs. same field & year
Citations per year
References
The Catalytic Oxidative Coupling of Methane
Angewandte Chemie International Edition in English · 1995 · 735 citations
The 2012 Plasma Roadmap
Journal of Physics D Applied Physics · 2012 · 621 citations
The 2017 Plasma Roadmap: Low temperature plasma science and technology
Journal of Physics D Applied Physics · 2017 · 928 citations
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