Dispersion quantification provides critical insight and towards understanding and improving the influence of nanoparticle dispersion on the behaviour of the nanocomposite at macro and nanoscale level. This study was precipitated by the limitations of most methods for quantifying dispersion to sufficiently handle issues regarding scalability, complexity, consistency and versatility. A quantity (D 0 ) based on the variance of the fractal dimension was used to quantify dispersion successfully. The concept was validated using real microscopy images. The approach is simple and versatile to implement
Particle spatial dispersion is a crucial characteristic of polymer composite materials and this prop...
<p>Understanding transport characteristics of airborne nanotubes and nanofibers is important for ass...
The objective of this thesis is to determine by optical methods the soot size distribution. Soot are...
Measuring quantitatively the nanoparticle dispersion of a composite material requires more than choo...
Characterizing the quality of dispersion of nanocomposites presents a challenging statistical proble...
Applying a combination of techniques to characterize polypropy-lene nanocomposites reveals critical ...
The dispersion of nanoparticles in nanocomposites of an epoxy matrix reinforced with alumina (10nm) ...
A non-destructive evaluation (NDE) technique capable of testing the dispersion of nanoparticles in a...
This study was prompted by the inadequacy of most dispersion quantification techniques to address is...
As the quantitative evaluation of dispersion of nanoparticles are crucial for the research of nanoco...
Purpose : Evaluation of particle size distribution (PSD) of multimodal dispersion of nanoparticles i...
<div><p>We seek to provide a metric for quantifying the degree of dispersion of nanostructures, such...
International audiencePURPOSE: Evaluation of particle size distribution (PSD) of multimodal dispersi...
The dimensions of ultrasmall inorganic nanoparticles (US-NPs) is in the heart of the design of diagn...
AbstractBy accounting for realistic interparticle interaction energy of fine dry nanoparticles, an o...
Particle spatial dispersion is a crucial characteristic of polymer composite materials and this prop...
<p>Understanding transport characteristics of airborne nanotubes and nanofibers is important for ass...
The objective of this thesis is to determine by optical methods the soot size distribution. Soot are...
Measuring quantitatively the nanoparticle dispersion of a composite material requires more than choo...
Characterizing the quality of dispersion of nanocomposites presents a challenging statistical proble...
Applying a combination of techniques to characterize polypropy-lene nanocomposites reveals critical ...
The dispersion of nanoparticles in nanocomposites of an epoxy matrix reinforced with alumina (10nm) ...
A non-destructive evaluation (NDE) technique capable of testing the dispersion of nanoparticles in a...
This study was prompted by the inadequacy of most dispersion quantification techniques to address is...
As the quantitative evaluation of dispersion of nanoparticles are crucial for the research of nanoco...
Purpose : Evaluation of particle size distribution (PSD) of multimodal dispersion of nanoparticles i...
<div><p>We seek to provide a metric for quantifying the degree of dispersion of nanostructures, such...
International audiencePURPOSE: Evaluation of particle size distribution (PSD) of multimodal dispersi...
The dimensions of ultrasmall inorganic nanoparticles (US-NPs) is in the heart of the design of diagn...
AbstractBy accounting for realistic interparticle interaction energy of fine dry nanoparticles, an o...
Particle spatial dispersion is a crucial characteristic of polymer composite materials and this prop...
<p>Understanding transport characteristics of airborne nanotubes and nanofibers is important for ass...
The objective of this thesis is to determine by optical methods the soot size distribution. Soot are...