Peak Force Tapping-mode AFM is used to investigate the three-dimensional morphology of RuO2 nanoparticles supported on a solid surface, with sub-nanometer spatial resolution. Samples were prepared by spin coating (i) a drop of RuO2 colloidal suspension onto a mica sheet, followed by further treatments (drying, calcination and/or reduction), and (ii) a second drop of colloidal suspension on fresh, dried or calcined RuO2-mica. RuO2 crystallites are supported with a certain distribution of sizes, and this heterogeneity is essentially maintained after high-temperature treatments. After calcination, single coated RuO2-mica samples present small RuO2 crystallites (4.5 nm height) as well as nanorod-like assemblies (14 nm height). A disaggregation ...
The structural modification of the Ru(0001) surface is followed <i>in real-time</i> using low-energy...
The effect of TiO2 phase structure on the dispersion of Ru nanoparticles was investigated in this st...
International audienceRuO2 nanowires are synthesized by oxidation of ruthenium thanks to a micro-pos...
Choosing and controlling the size distribution of Ru-supported nanoparticles are crucial steps to re...
Recent progress in colloidal synthesis of nanoparticles with well-Controlled size, shape, and compos...
Recent progress in colloidal synthesis of nanoparticles with well-controlled size, shape, and compos...
The enhancement in durability of Pt nanoparticles modified by nanostructured RuO2 was studied using ...
41-45Ruthenium dioxide nanoparticles (RuO2) with an average particle size of 54-95 nm are readily...
We present a DFT-based Wulff construction of the equilibrium shape of RuO2 particles in an oxygen en...
Vapour-phase chemical deposition techniques rely on an interplay of adsorption, diffusion, reaction,...
RuO2 nanostructures were synthesized by heating Ru nanoparticles in air at 280°C using Cu as catalys...
The exploration of novel synthetic methodologies that control both size and shape of functional nano...
International audienceVarious ruthenium dioxide nanostructures were grown locally by the oxidation o...
A simple chemical particle production route to produce RuO2 nanorods is introduced.In this method, R...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Understanding the growth mechanisms during the e...
The structural modification of the Ru(0001) surface is followed <i>in real-time</i> using low-energy...
The effect of TiO2 phase structure on the dispersion of Ru nanoparticles was investigated in this st...
International audienceRuO2 nanowires are synthesized by oxidation of ruthenium thanks to a micro-pos...
Choosing and controlling the size distribution of Ru-supported nanoparticles are crucial steps to re...
Recent progress in colloidal synthesis of nanoparticles with well-Controlled size, shape, and compos...
Recent progress in colloidal synthesis of nanoparticles with well-controlled size, shape, and compos...
The enhancement in durability of Pt nanoparticles modified by nanostructured RuO2 was studied using ...
41-45Ruthenium dioxide nanoparticles (RuO2) with an average particle size of 54-95 nm are readily...
We present a DFT-based Wulff construction of the equilibrium shape of RuO2 particles in an oxygen en...
Vapour-phase chemical deposition techniques rely on an interplay of adsorption, diffusion, reaction,...
RuO2 nanostructures were synthesized by heating Ru nanoparticles in air at 280°C using Cu as catalys...
The exploration of novel synthetic methodologies that control both size and shape of functional nano...
International audienceVarious ruthenium dioxide nanostructures were grown locally by the oxidation o...
A simple chemical particle production route to produce RuO2 nanorods is introduced.In this method, R...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Understanding the growth mechanisms during the e...
The structural modification of the Ru(0001) surface is followed <i>in real-time</i> using low-energy...
The effect of TiO2 phase structure on the dispersion of Ru nanoparticles was investigated in this st...
International audienceRuO2 nanowires are synthesized by oxidation of ruthenium thanks to a micro-pos...