4.6 Article

Numerical and experimental analysis of radiation from a microwave plasma source of the TIAGO type

Related references

Note: Only part of the references are listed.
Article Chemistry, Applied

Optimizing high-quality graphene nanoflakes production through organic (bio)-precursor plasma decomposition

A. Casanova et al.

Summary: The research assesses the impact of ethanol flow rates on graphene production rate and quality, finding that the production rate increases with higher ethanol flows, but excessive ethanol flows lead to a decrease in production rate and the formation of other carbon-based by-products.

FUEL PROCESSING TECHNOLOGY (2021)

Article Physics, Fluids & Plasmas

Electron concentration in the non-luminous part of the atmospheric pressure filamentary discharge

J. Faltynek et al.

Summary: The study used microwave interferometry to determine the electron density during plasma synthesis of graphene. The results showed that even at a radial distance ten times larger than the apparent plasma diameter, the plasma density remained around 10^16-10^17 m^-3.

PLASMA SOURCES SCIENCE & TECHNOLOGY (2021)

Article Chemistry, Multidisciplinary

Numerical 3D Modeling: Microwave Plasma Torch at Intermediate Pressure

Qinghao Shen et al.

APPLIED SCIENCES-BASEL (2020)

Article Physics, Fluids & Plasmas

Propagating modes of the travelling wave in a microwave plasma torch with metallic enclosure

Wencong Zhang et al.

PHYSICS OF PLASMAS (2019)

Article Physics, Fluids & Plasmas

Scalable graphene production from ethanol decomposition by microwave argon plasma torch

C. Melero et al.

PLASMA PHYSICS AND CONTROLLED FUSION (2018)

Article Physics, Applied

Understanding Microwave Surface-Wave Sustained Plasmas at Intermediate Pressure by 2D Modeling and Experiments

Violeta Georgieva et al.

PLASMA PROCESSES AND POLYMERS (2017)

Article Engineering, Electrical & Electronic

Experimental study on the surface wave driven plasma antenna

Fatemeh Sadeghikia et al.

AEU-INTERNATIONAL JOURNAL OF ELECTRONICS AND COMMUNICATIONS (2016)

Article Chemistry, Physical

Hydrogen production from ethanol decomposition by microwave plasma TIAGO torch

R. Rincon et al.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2014)

Article Physics, Fluids & Plasmas

Numerical study on microwave-sustained argon discharge under atmospheric pressure

Y. Yang et al.

PHYSICS OF PLASMAS (2014)

Article Optics

Modelling of discharge in a high-flow microwave plasma source (MPS)

Helena Nowakowska et al.

EUROPEAN PHYSICAL JOURNAL D (2013)

Article Physics, Applied

Effect of remote field electromagnetic boundary conditions on microwave-induced plasma torches

M. Jimenez-Diaz et al.

JOURNAL OF PHYSICS D-APPLIED PHYSICS (2011)

Article Engineering, Chemical

Excitation of Species in an Expanded Argon Microwave Plasma at Atmospheric Pressure

M. C. Garcia et al.

PLASMA CHEMISTRY AND PLASMA PROCESSING (2010)

Article Materials Science, Coatings & Films

Generation of microplasma jet at atmospheric pressure using a modified waveguide-based plasma torch

S. Kanazawa et al.

SURFACE & COATINGS TECHNOLOGY (2008)

Article Physics, Fluids & Plasmas

Designing an efficient microwave-plasma source, independent of operating conditions, at atmospheric pressure

T. Fleisch et al.

PLASMA SOURCES SCIENCE & TECHNOLOGY (2007)

Article Physics, Fluids & Plasmas

Solving the Boltzmann equation to obtain electron transport coefficients and rate coefficients for fluid models

GJM Hagelaar et al.

PLASMA SOURCES SCIENCE & TECHNOLOGY (2005)

Article Physics, Multidisciplinary

Treatment of N2O in pulsed microwave torch discharge

M Jasinski et al.

CZECHOSLOVAK JOURNAL OF PHYSICS (2004)

Article Physics, Applied

CFC-11 destruction by microwave torch generated atmospheric-pressure nitrogen discharge

M Jasinski et al.

JOURNAL OF PHYSICS D-APPLIED PHYSICS (2002)

Article Physics, Fluids & Plasmas

Waveguide-based single and multiple nozzle plasma torches: the TIAGO concept

M Moisan et al.

PLASMA SOURCES SCIENCE & TECHNOLOGY (2001)