Ultrasonic treatment is effective in deagglomerating and dispersing nanoparticles in various liquids. However, the exact deagglomeration mechanisms vary for different nanoparticle clusters, owing to different particle geometries and inter-particle adhesion forces. Here, the deagglomeration mechanisms and the influence of sonotrode amplitude during ultrasonication of multiwall carbon nanotubes in de-ionized water were studied by a combination of high-speed imaging and numerical modeling. Particle image velocimetry was applied to images with a higher field of view to calculate the average streaming speeds distribution. These data allowed direct comparison with modeling results. For images captured at higher frame rates and magnification, diff...
Carbon nanotubes are commonly dispersed in liquid solvents by means of sonication. This has the disa...
Carbon nanotubes are commonly dispersed in liquid solvents by means of sonication. This has the disa...
© 2021 The Author(s). Ultrasonic de-agglomeration and dispersion of oxides is important for a range ...
Ultrasonic treatment is effective in deagglomerating and dispersing nanoparticles in various liquids...
Ultrasonication is the most widely used technique for the dispersion of a range of nanomaterials, bu...
Processing of nanoparticles is a core research area of nanotechnology. Carbon nanotubes (CNTs) are a...
The effect of sonication temperature on the debundling of carbon nanotube (CNT) macro-bundles is re...
The effect of sonication temperature on the debundling of carbon nanotube (CNT) macro-bundles is rep...
The aim of this work was to demonstrate an optimization methodology to reliably obtain stable macrod...
International audienceDispersion of nanotubes is a crucial step for many applications. The propertie...
This study is concerned with the deagglomeration of hydrophilic silica nanoparticle clusters (Aerosi...
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...
Dispersion of carbon nanotubes and carbon nanofibers is a crucial processing step in the production ...
AbstractUltrasound attenuates when propagating through aqueous dispersions of carbon nanotubes. We e...
Carbon nanotubes are commonly dispersed in liquid solvents by means of sonication. This has the disa...
Carbon nanotubes are commonly dispersed in liquid solvents by means of sonication. This has the disa...
© 2021 The Author(s). Ultrasonic de-agglomeration and dispersion of oxides is important for a range ...
Ultrasonic treatment is effective in deagglomerating and dispersing nanoparticles in various liquids...
Ultrasonication is the most widely used technique for the dispersion of a range of nanomaterials, bu...
Processing of nanoparticles is a core research area of nanotechnology. Carbon nanotubes (CNTs) are a...
The effect of sonication temperature on the debundling of carbon nanotube (CNT) macro-bundles is re...
The effect of sonication temperature on the debundling of carbon nanotube (CNT) macro-bundles is rep...
The aim of this work was to demonstrate an optimization methodology to reliably obtain stable macrod...
International audienceDispersion of nanotubes is a crucial step for many applications. The propertie...
This study is concerned with the deagglomeration of hydrophilic silica nanoparticle clusters (Aerosi...
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...
Dispersion of carbon nanotubes and carbon nanofibers is a crucial processing step in the production ...
AbstractUltrasound attenuates when propagating through aqueous dispersions of carbon nanotubes. We e...
Carbon nanotubes are commonly dispersed in liquid solvents by means of sonication. This has the disa...
Carbon nanotubes are commonly dispersed in liquid solvents by means of sonication. This has the disa...
© 2021 The Author(s). Ultrasonic de-agglomeration and dispersion of oxides is important for a range ...