Japanese Journal of Applied Physics · 2021 · 36 citations · 191 references
EngineeringNon-equilibrium PlasmasPlasma PhysicsChemistryPlasma ProcessingFunctional Nitrogen ScienceChemical EngineeringReactive Nitrogen SpeciePlasma SimulationPlasma TheoryReactive Nitrogen SpeciesPhotocatalysisPlasma ConfinementPhotosynthesisHealth SciencesMaterials SciencePhotochemistryMechanistic PhotochemistryCatalysisHydrogenAbstract NitrogenQuantum DevicesChemical KineticsNitrosative Stress
Abstract Nitrogen is a very common element, comprising approximately 78% of Earth’s atmosphere, and is an important component of various electronic devices while also being essential for life. However, it is challenging to directly utilize dinitrogen because of the highly stable triple bond in this molecule. The present review examines the use of non-equilibrium plasmas to generate controlled electron impacts as a means of generating reactive nitrogen species (RNS) with high internal energy values and extremely short lifetimes. These species include ground state nitrogen atoms, excited nitrogen atoms, etc. RNS can subsequently react with oxygen and/or hydrogen to generate new highly reactive compounds and can also be used to control various cell functions and create new functional materials. Herein, plasma-processing methods intended to provide RNS serving as short-lived precursors for a range of applications are examined in detail.
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