The synthesis of nanoparticles by means of electrical discharges between two electrodes in an inert gas at atmospheric pressure, as driven by a constant current ranging from a few milliamps to tens of amps, is investigated in this work. An extensive series of experiments are conducted with copper as a consumable electrode and pure nitrogen as the inert gas. Three different DC power supplies are used to drive electrical discharges for the entire operating current range. Then, three electrical discharge regimes (spark, glow, and arc) with distinct voltage–current characteristics and plasma emission spectra are recognized. For the first time, nanoparticles are synthesized by evaporation of an electrode by atmospheric pressure inert gas DC glow...
Spark discharge is a method for producing nanoparticles from conductive materials. Besides the gener...
In the growing field of nanotechnology there is an increasing need to develop production methods for...
Nanocrystals in the lower-nanometer-size range are attracting growing interest due to their unique p...
The synthesis of nanoparticles by means of electrical discharges between two electrodes in an inert ...
The synthesis of nanoparticles by means of electrical discharges between two electrodes in an inert ...
The synthesis of nanoparticles by means of electrical discharges between two electrodes in an inert ...
The synthesis of nanoparticles by means of electrical discharges between two electrodes in an inert ...
The production of nanoparticles by microsecond spark discharge evaporation in inert gas is studied s...
The production of nanoparticles by microsecond spark discharge evaporation in inert gas is studied s...
Abstract The production of nanoparticles by microsecond spark discharge evaporation in inert gas is ...
Nanoparticles are efficiently produced by using plasma sources such spark and/or arc discharges*. Th...
Nanoparticles are efficiently produced by using plasma sources such spark and/or arc discharges*. Th...
International audienceRecently, it has been shown that a parallel system of metal electrodes in spar...
International audienceRecently, it has been shown that a parallel system of metal electrodes in spar...
<p> Dielectric barrier discharge ( DBD) and spark discharge, two versatile atmospheric pressure pla...
Spark discharge is a method for producing nanoparticles from conductive materials. Besides the gener...
In the growing field of nanotechnology there is an increasing need to develop production methods for...
Nanocrystals in the lower-nanometer-size range are attracting growing interest due to their unique p...
The synthesis of nanoparticles by means of electrical discharges between two electrodes in an inert ...
The synthesis of nanoparticles by means of electrical discharges between two electrodes in an inert ...
The synthesis of nanoparticles by means of electrical discharges between two electrodes in an inert ...
The synthesis of nanoparticles by means of electrical discharges between two electrodes in an inert ...
The production of nanoparticles by microsecond spark discharge evaporation in inert gas is studied s...
The production of nanoparticles by microsecond spark discharge evaporation in inert gas is studied s...
Abstract The production of nanoparticles by microsecond spark discharge evaporation in inert gas is ...
Nanoparticles are efficiently produced by using plasma sources such spark and/or arc discharges*. Th...
Nanoparticles are efficiently produced by using plasma sources such spark and/or arc discharges*. Th...
International audienceRecently, it has been shown that a parallel system of metal electrodes in spar...
International audienceRecently, it has been shown that a parallel system of metal electrodes in spar...
<p> Dielectric barrier discharge ( DBD) and spark discharge, two versatile atmospheric pressure pla...
Spark discharge is a method for producing nanoparticles from conductive materials. Besides the gener...
In the growing field of nanotechnology there is an increasing need to develop production methods for...
Nanocrystals in the lower-nanometer-size range are attracting growing interest due to their unique p...