The size dependent contact behavior of nanoparticle agglomerates was studied. Size fractionated TiO2 nanoparticle agglomerates were synthesized with a combination of a flame spray reactor and a differential mobility analyzer resulting in four different agglomerate sizes (median values from 78 to 161nm). Contact behavior of the fractionated agglomerates was investigated using atomic force microscopy. A model of the contact behavior of agglomerates under tensile stress was established in which the aggregates within the agglomerates rearrange and form chains before breakage. Force curves show that the length of the chains and the amount of rearrangements depend on the agglomerate sizes. Larger agglomerates require more work for their aggregate...
Nanoparticles of controlled size, well defined shape, pure phase and of clean surfaces are ideal mod...
The size estimating of fluidized Titania agglomerates in a conical fluidized bed was studied by forc...
The compacting behavior of agglomerated aerosol nanoparticles in the size range between 7 and 150 nm...
Efficient nanopowder processing requires knowledge of the powder’s mechanical properties. Due to the...
Emerging nanomaterials are being manufactured with varying particle sizes, morphologies, and crystal...
Fundamental knowledge about the mechanisms of adhesion between oxide particles with diameters of few...
The impaction behavior of agglomerates plays a significant role in nanoparticle technology. In order...
In this study, the impaction behavior of titanium dioxide (TiO2) agglomerates is evaluated, and the ...
Six nanosized titanium dioxide powders synthesized from a sulfate process were investigated. The ta...
Fluidization is a technique used to process large quantities of nanopowder with no solvent waste and...
<div><p>In this study, the impaction behavior of titanium dioxide (TiO<sub>2</sub>) agglomerates is ...
In this work the mechanical interaction mechanisms between TiO2 nanoparticles at ambient conditions ...
This study aims to elucidate the aggregation and agglomeration behavior of TiO2 and ZrO2 nanoparticl...
Nanomaterials and nanoparticles are gaining more and more importance in science, technology, and med...
Titanium dioxide nanoparticles (TiO2 NP) are possible carcinogenic materials (2B-IARC) and their tox...
Nanoparticles of controlled size, well defined shape, pure phase and of clean surfaces are ideal mod...
The size estimating of fluidized Titania agglomerates in a conical fluidized bed was studied by forc...
The compacting behavior of agglomerated aerosol nanoparticles in the size range between 7 and 150 nm...
Efficient nanopowder processing requires knowledge of the powder’s mechanical properties. Due to the...
Emerging nanomaterials are being manufactured with varying particle sizes, morphologies, and crystal...
Fundamental knowledge about the mechanisms of adhesion between oxide particles with diameters of few...
The impaction behavior of agglomerates plays a significant role in nanoparticle technology. In order...
In this study, the impaction behavior of titanium dioxide (TiO2) agglomerates is evaluated, and the ...
Six nanosized titanium dioxide powders synthesized from a sulfate process were investigated. The ta...
Fluidization is a technique used to process large quantities of nanopowder with no solvent waste and...
<div><p>In this study, the impaction behavior of titanium dioxide (TiO<sub>2</sub>) agglomerates is ...
In this work the mechanical interaction mechanisms between TiO2 nanoparticles at ambient conditions ...
This study aims to elucidate the aggregation and agglomeration behavior of TiO2 and ZrO2 nanoparticl...
Nanomaterials and nanoparticles are gaining more and more importance in science, technology, and med...
Titanium dioxide nanoparticles (TiO2 NP) are possible carcinogenic materials (2B-IARC) and their tox...
Nanoparticles of controlled size, well defined shape, pure phase and of clean surfaces are ideal mod...
The size estimating of fluidized Titania agglomerates in a conical fluidized bed was studied by forc...
The compacting behavior of agglomerated aerosol nanoparticles in the size range between 7 and 150 nm...