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Figure5

Applied Microbiology
  • The atmospheric pressure capillary plasma jet is well-suited to supply H2O2 for plasma-driven biocatalysis

Figure4

Applied Microbiology
  • The atmospheric pressure capillary plasma jet is well-suited to supply H2O2 for plasma-driven biocatalysis

Figure3

Applied Microbiology
  • The atmospheric pressure capillary plasma jet is well-suited to supply H2O2 for plasma-driven biocatalysis

Figure2

Applied Microbiology
  • The atmospheric pressure capillary plasma jet is well-suited to supply H2O2 for plasma-driven biocatalysis

Figures7+8

Applied Microbiology
  • The atmospheric pressure capillary plasma jet is well-suited to supply H2O2 for plasma-driven biocatalysis

Supplementary Figures1-3

Applied Microbiology
  • The atmospheric pressure capillary plasma jet is well-suited to supply H2O2 for plasma-driven biocatalysis

Supplementary Figure4

Applied Microbiology
  • The atmospheric pressure capillary plasma jet is well-suited to supply H2O2 for plasma-driven biocatalysis

Supplementary Figure5

Applied Microbiology
  • The atmospheric pressure capillary plasma jet is well-suited to supply H2O2 for plasma-driven biocatalysis

Figure11

PIP
  • Mode transition in a helium barrier discharge with oxygen admixtures: Insights into a micro cavity plasma array reactor