The structure and interaction of nanodiamond fractal clusters were studied by small-angle X-ray and neutron scattering including contrast variation. The density of nanodiamonds, the aggregation number, and the ratio of aggregated/non-aggregated particles were determined. The analysis of the structure-factor made it possible to obtain the effective potential of cluster–cluster interaction. Branched fractal colloids behave to a certain extent like hard spheres, but the effective correlation length decreases with increasing concentration up to the sol–gel transition. The proposed approach for analyzing cluster–cluster correlations can be used in wider class of liquid systems with nano-sized non-compact inclusions
The phase behavior of colloids that interact via competing interactions - short-range attraction and...
The morphology of the precipitated silica VN3 filled in styrene butadiene rubber was studied as a fu...
In the past detonation nanodiamonds (DNDs), sized 3–5 nm, have been praised for their colloidal stab...
Detonation nanodiamonds (DND) form fractal-like aggregates composed of polydisperse DND particles. W...
Formation of fractal aggregates is generally an undesired effect which may lead to end products with...
5 pages, 4 figures, paper published in Physical Review EInternational audienceWater-soluble clusters...
We report the results of an in situ small-angle x-ray scattering (SAXS) study of the aggregation of ...
Structural properties of small aggregates containing up to 100 particles have been studied through d...
We report the results of an in situ small-angle X-ray scattering (SAXS) study of the aggregation of ...
The paper presents the results of the structural study of various types of the water-detonation nano...
Nanodiamonds are increasingly used in many areas of science and technology, yet, their colloidal pro...
Porous solids built of fractal clusters can be obtained by destabilization of quasi-monodisperse sil...
The study of two-dimensional (2D) structures formed by nanoparticles and colloidal particles has att...
We present experimental investigations of two-dimensional crystallization of calibrated Brownian sph...
The scattering function S(q) has been computed for simulated fractal aggregates using off-lattice cl...
The phase behavior of colloids that interact via competing interactions - short-range attraction and...
The morphology of the precipitated silica VN3 filled in styrene butadiene rubber was studied as a fu...
In the past detonation nanodiamonds (DNDs), sized 3–5 nm, have been praised for their colloidal stab...
Detonation nanodiamonds (DND) form fractal-like aggregates composed of polydisperse DND particles. W...
Formation of fractal aggregates is generally an undesired effect which may lead to end products with...
5 pages, 4 figures, paper published in Physical Review EInternational audienceWater-soluble clusters...
We report the results of an in situ small-angle x-ray scattering (SAXS) study of the aggregation of ...
Structural properties of small aggregates containing up to 100 particles have been studied through d...
We report the results of an in situ small-angle X-ray scattering (SAXS) study of the aggregation of ...
The paper presents the results of the structural study of various types of the water-detonation nano...
Nanodiamonds are increasingly used in many areas of science and technology, yet, their colloidal pro...
Porous solids built of fractal clusters can be obtained by destabilization of quasi-monodisperse sil...
The study of two-dimensional (2D) structures formed by nanoparticles and colloidal particles has att...
We present experimental investigations of two-dimensional crystallization of calibrated Brownian sph...
The scattering function S(q) has been computed for simulated fractal aggregates using off-lattice cl...
The phase behavior of colloids that interact via competing interactions - short-range attraction and...
The morphology of the precipitated silica VN3 filled in styrene butadiene rubber was studied as a fu...
In the past detonation nanodiamonds (DNDs), sized 3–5 nm, have been praised for their colloidal stab...