The use of non-equilibrium atmospheric pressure plasmas for medicinal and biological applications has shown great promise. Possibilities exist for potential cancer therapies as well as sterilisation and wound healing. A fundamental understanding of the plasma chemistry is important to the further development of these applications. Of particular importance are the chemical kinetics and energy transport mechanisms at the liquid interface. The aim of this work is to obtain measurements of the important reactive neutral species in this region in order to better understand and control the plasma chemical environment. Direct observation of free radicals is complex due to their very short lifetimes. Spin trapping is used to selectively convert uns...
The inactivation of bacteria suspended in liquids by an atmospheric pressure plasma is a complicated...
Devices to produce non-thermal atmospheric-pressure plasma, or NTP, are gaining increasing attention...
International audienceNon-thermal plasmas produced at atmospheric pressure offer unique environments...
Non-equilibrium atmospheric-pressure plasmas have recently become a topical area of research owing t...
Non-thermal atmospheric pressure plasmas are widely used in biomedical research and clinical applica...
Non-thermal atmospheric pressure plasma has attracted considerable attention in recent years due to ...
Non-thermal atmospheric pressure plasmas are widely used in biomedical research and clinical applica...
In this work, the interaction of atmospheric pressure plasmas with liquids is investigated. On the e...
International audienceCold atmospheric pressure plasmas (APPs) are known sources of reactive oxygen,...
International audienceThe understanding of plasma–liquid interactions is of major importance, not on...
Atmospheric pressure plasma jets generated using noble gases have been the focus of intense investig...
International audienceCold Atmospheric Plasmas (CAPs) are now currently used for numerous applicatio...
Recently, cold, non-equilibrium atmospheric pressure plasmas (CAPs) and their active chemistry have ...
AbstractPlasma medicine refers to the application of nonequilibrium plasmas at approximately body te...
Recently, it has been demonstrated that cold atmospheric plasmas (CAPs) have consider-able potential...
The inactivation of bacteria suspended in liquids by an atmospheric pressure plasma is a complicated...
Devices to produce non-thermal atmospheric-pressure plasma, or NTP, are gaining increasing attention...
International audienceNon-thermal plasmas produced at atmospheric pressure offer unique environments...
Non-equilibrium atmospheric-pressure plasmas have recently become a topical area of research owing t...
Non-thermal atmospheric pressure plasmas are widely used in biomedical research and clinical applica...
Non-thermal atmospheric pressure plasma has attracted considerable attention in recent years due to ...
Non-thermal atmospheric pressure plasmas are widely used in biomedical research and clinical applica...
In this work, the interaction of atmospheric pressure plasmas with liquids is investigated. On the e...
International audienceCold atmospheric pressure plasmas (APPs) are known sources of reactive oxygen,...
International audienceThe understanding of plasma–liquid interactions is of major importance, not on...
Atmospheric pressure plasma jets generated using noble gases have been the focus of intense investig...
International audienceCold Atmospheric Plasmas (CAPs) are now currently used for numerous applicatio...
Recently, cold, non-equilibrium atmospheric pressure plasmas (CAPs) and their active chemistry have ...
AbstractPlasma medicine refers to the application of nonequilibrium plasmas at approximately body te...
Recently, it has been demonstrated that cold atmospheric plasmas (CAPs) have consider-able potential...
The inactivation of bacteria suspended in liquids by an atmospheric pressure plasma is a complicated...
Devices to produce non-thermal atmospheric-pressure plasma, or NTP, are gaining increasing attention...
International audienceNon-thermal plasmas produced at atmospheric pressure offer unique environments...