Datasets
Chemistry of Nanosecond Plasmas in water
Discharges in liquids are the basis of a range of applications in electrochemistry, waste water treatment or plasma medicine. One advantage of discharges in water is their ability to produce radicals and molecules directly inside liquid with a...
- 2x csv
Pattern Formation in HiPIMS Plasmas
High power impulse magnetron sputtering (HiPIMS) plasmas produce a very energetic growth flux for the synthesis of thin films with superior properties. High power densities in the range of a few kW/cm2 are applied to a metal target electrode in...
Figure 13: Normalized spatio-temporal plots of the electron impact excitation rate
- Atomic oxygen generation in atmospheric pressure RF plasma jets driven by tailored voltage waveforms in mixtures of He and O2
Atomic oxygen generation in atmospheric pressure RF plasma jets driven by tailored voltage waveforms in mixtures of He and O<sub>2</sub>
Absolute atomic oxygen densities measured space resolved in the active plasma volume of a COST microplasma reference jet operated in He/O2 and driven by tailored voltage waveforms are presented. The measurements are performed for different shapes...
- 11x csv
Figure 5: electron impact excitation rate
- Atomic oxygen generation in atmospheric pressure RF plasma jets driven by tailored voltage waveforms in mixtures of He and O2
01b Bacterial growth with paraquat
- Dielectric barrier discharge plasma treatment affects stability, metal ion coordination, and enzyme activity of bacterial superoxide dismutases
Dielectric barrier discharge plasma treatment affects stability, metal ion coordination, and enzyme activity of bacterial superoxide dismutases
A molecular‐level understanding of the effects of atmospheric‐pressure plasma on biological samples requires knowledge of the effects on proteins. Superoxide dismutases, which detoxify superoxide under oxidative stress conditions, play a key role...
- 16x csv
01c Bacterial plasma sensitivity
- Dielectric barrier discharge plasma treatment affects stability, metal ion coordination, and enzyme activity of bacterial superoxide dismutases