Title of article
Optical and electrical characterization of carbon nanoparticles produced in laminar premixed flames
Author/Authors
De Falco، نويسنده , , Gianluigi and Commodo، نويسنده , , Mario and Bonavolontà، نويسنده , , Carmela and Pepe، نويسنده , , Giovanni Piero and Minutolo، نويسنده , , Patrizia and D’Anna، نويسنده , , Andrea، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
10
From page
3201
To page
3210
Abstract
Optical and electrical properties of carbonaceous particles produced in laboratory scale, premixed ethylene/air flames are obtained. Light absorption and Raman spectroscopy show that the change in particle nanostructure follows a graphitization trajectory as the flame richness increases. The optical band gap decreases and the size of the aromatic network in the particle increases, while the interlayer spacing between parallel layers decreases. The electrical conductivity of the materials increases by increasing flame richness in agreement to the graphitization trajectory. A non-ohmic behavior has been found and explained in terms of electron tunneling in a percolative network. Our results show that the electrical properties of flame formed carbon nanoparticles are strongly dependent on their nanostructure, and hence they have to be used carefully for the determination of particle concentration with conductometric sensors. Moreover, the dependence of the electrical properties of combustion formed particles might be useful for the development of cheap sensors for the selective detection of different classes of combustion aerosols.
Keywords
Carbon nanoparticles , Raman , optical characteristics , Electrical properties
Journal title
Combustion and Flame
Serial Year
2014
Journal title
Combustion and Flame
Record number
2277800
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