The effect of sonication temperature on the debundling of carbon nanotube (CNT) macro-bundles is reported and demonstrated by analysis with different particle sizing methods. The change of bundle size over time and after several comparatively gentle sonication cycles of suspensions at various temperatures is reported. A novel technique is presented that produces a more homogeneous nanotube dispersion by lowering the temperature during sonication. We produce evidence that temperature influences the suspension stability, and that low temperatures are preferable to obtain better dispersion without increasing damage to the CNT walls
International audienceThe sonication process is commonly used for de-agglomerating and dispersing na...
peer reviewedMotivated by numerous recent reports indicating attractive properties of composite mate...
The sonication process is commonly used for de-agglomerating and dispersing nanomaterials in aqueous...
The effect of sonication temperature on the debundling of carbon nanotube (CNT) macro-bundles is re...
The aim of this work was to demonstrate an optimization methodology to reliably obtain stable macrod...
Debundling and dispersing single-walled carbon nanotubes (SWNTs) is essential for applications, but ...
As-produced carbon nanotubes come in bundles that must be exfoliated for practical applications in n...
Ultrasonication is widely used for preparing Single-Walled Carbon Nanotube (SWNT) dispersions in dif...
Ultrasonic treatment is effective in deagglomerating and dispersing nanoparticles in various liquids...
The aim of this work is the investigation of the effect of ultrasound treatment on the structural ch...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/112287/1/jps24483.pd
Carbon nanotubes (CNTs) have gained popularity due to their many characteristics which make them the...
The main purpose of this study is to focus the light for the first time on the recognized re-dispers...
Dispersion of carbon nanotubes (CNTs) is key in the fabrication of CNT composites. Unstable dispersi...
Sonication is a powerful technique to promote the dispersion of carbon nanotubes (CNTs) and enhance ...
International audienceThe sonication process is commonly used for de-agglomerating and dispersing na...
peer reviewedMotivated by numerous recent reports indicating attractive properties of composite mate...
The sonication process is commonly used for de-agglomerating and dispersing nanomaterials in aqueous...
The effect of sonication temperature on the debundling of carbon nanotube (CNT) macro-bundles is re...
The aim of this work was to demonstrate an optimization methodology to reliably obtain stable macrod...
Debundling and dispersing single-walled carbon nanotubes (SWNTs) is essential for applications, but ...
As-produced carbon nanotubes come in bundles that must be exfoliated for practical applications in n...
Ultrasonication is widely used for preparing Single-Walled Carbon Nanotube (SWNT) dispersions in dif...
Ultrasonic treatment is effective in deagglomerating and dispersing nanoparticles in various liquids...
The aim of this work is the investigation of the effect of ultrasound treatment on the structural ch...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/112287/1/jps24483.pd
Carbon nanotubes (CNTs) have gained popularity due to their many characteristics which make them the...
The main purpose of this study is to focus the light for the first time on the recognized re-dispers...
Dispersion of carbon nanotubes (CNTs) is key in the fabrication of CNT composites. Unstable dispersi...
Sonication is a powerful technique to promote the dispersion of carbon nanotubes (CNTs) and enhance ...
International audienceThe sonication process is commonly used for de-agglomerating and dispersing na...
peer reviewedMotivated by numerous recent reports indicating attractive properties of composite mate...
The sonication process is commonly used for de-agglomerating and dispersing nanomaterials in aqueous...