Inhomogeneous distributions of nanoparticles in polymer nanocomposites have a strong influence on final material properties. Quantitative methods to characterise particle dispersion are rarely applied but are critical for advancing understanding of material behaviour, developing accurate computer models, and optimizing processing. Two complementary quantitative methods were developed to map local concentration, based on Raman spectroscopy and simple optical absorbance, respectively. The approaches are demonstrated for a model multi-walled carbon nanotube (MWNT) epoxy nanocomposite, but should be widely applicable. Maps of absolute concentration can be produced with submicron resolution, allowing analysis of the uniformity of MWNT concentrat...
Incorporation of carbon nanotubes into epoxy resin composites has the effect of increasing electrica...
A method is proposed for determining electrical percolation thresholds in carbon nanotube (CNT) netw...
We have found that absorption spectra of single-wall carbon nanotube (SWCNT) dispersions can be accu...
Particle spatial dispersion is a crucial characteristic of polymer composite materials and this prop...
The available literature makes it very clear that accurate measurements of carbon nanotube dispersio...
International audienceRaman spectroscopy is used to access the dispersion state of DWNTs in a PEEK p...
This work is aimed at characterization of the carbon nanotube (CNT) distribution in polymethyl metha...
The G and D doublet, an intrinsic Raman feature of multi-walled nanotubes (MWNTs), was monitored in ...
Critical factors that determine the percolation threshold of carbon nanotube (CNT)-reinforced polyme...
Model composites of DNA-wrapped single-wall carbon nanotubes in poly(acrylic acid) are used to evalu...
International audienceCarbon nanotubes (CNT) reinforced nanocomposites represent an unique opportuni...
The incorporation of carbon nanotubes (CNTs) into polymers and metals modifies their intrinsic prope...
An extensive use of CNTs enhanced polymer composites can be boosted by novel NDE techniques able to ...
<div><p>We seek to provide a metric for quantifying the degree of dispersion of nanostructures, such...
Incorporation of carbon nanotubes into epoxy resin composites has the effect of increasing electrica...
A method is proposed for determining electrical percolation thresholds in carbon nanotube (CNT) netw...
We have found that absorption spectra of single-wall carbon nanotube (SWCNT) dispersions can be accu...
Particle spatial dispersion is a crucial characteristic of polymer composite materials and this prop...
The available literature makes it very clear that accurate measurements of carbon nanotube dispersio...
International audienceRaman spectroscopy is used to access the dispersion state of DWNTs in a PEEK p...
This work is aimed at characterization of the carbon nanotube (CNT) distribution in polymethyl metha...
The G and D doublet, an intrinsic Raman feature of multi-walled nanotubes (MWNTs), was monitored in ...
Critical factors that determine the percolation threshold of carbon nanotube (CNT)-reinforced polyme...
Model composites of DNA-wrapped single-wall carbon nanotubes in poly(acrylic acid) are used to evalu...
International audienceCarbon nanotubes (CNT) reinforced nanocomposites represent an unique opportuni...
The incorporation of carbon nanotubes (CNTs) into polymers and metals modifies their intrinsic prope...
An extensive use of CNTs enhanced polymer composites can be boosted by novel NDE techniques able to ...
<div><p>We seek to provide a metric for quantifying the degree of dispersion of nanostructures, such...
Incorporation of carbon nanotubes into epoxy resin composites has the effect of increasing electrica...
A method is proposed for determining electrical percolation thresholds in carbon nanotube (CNT) netw...
We have found that absorption spectra of single-wall carbon nanotube (SWCNT) dispersions can be accu...