Tunable nanostructures that feature a high surface area are firmly attached to a conducting substrate and can be fabricated efficiently over significant areas, which are of interest for a wide variety of applications in, for instance, energy storage and catalysis. We present a novel approach to fabricate Fe nanoparticles using a pulsed-plasma process and their subsequent guidance and self-organization into well-defined nanostructures on a substrate of choice by the use of an external magnetic field. A systematic analysis and study of the growth procedure demonstrate that nondesired nanoparticle agglomeration in the plasma phase is hindered by electrostatic repulsion, that a polydisperse nanoparticle distribution is a consequence of the magn...
This paper demonstrates fine size-controlled synthesis of superparamagnetic carbon-encapsulated iron...
A review is provided covering metal plasma production, the energetic condensation of metal plasmas,...
Highly dense 2D nanostructures are desirable in photocatalysis, water treatment and energy storage, ...
Tunable nanostructures that feature a high surface area are firmly attached to a conducting substrat...
Tunable nanostructures that feature a high surface area are firmly attached to a conducting substrat...
Nanomaterials are important tools for enabling technological progress as they can provide dramatical...
Iron nanoparticles (NPs) prepared by inert gas condensation were studied using high resolution trans...
International audienceAddition of Co2(Co)9 and Ru3(CO)12 on preformed monodisperse iron(0) nanoparti...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
We present a gas-phase process for surface patterning and 3D self-assembly of nanoparticles (NPs) of...
Uniform superparamagnetic iron oxide nanoparticles were obtained by coprecipitation under synthesis ...
Directed self-assembly of nanoparticles (NPs) is a promising strategy for bottom-up fabrication of n...
This paper demonstrates fine size-controlled synthesis of superparamagnetic carbon-encapsulated iron...
A review is provided covering metal plasma production, the energetic condensation of metal plasmas,...
Highly dense 2D nanostructures are desirable in photocatalysis, water treatment and energy storage, ...
Tunable nanostructures that feature a high surface area are firmly attached to a conducting substrat...
Tunable nanostructures that feature a high surface area are firmly attached to a conducting substrat...
Nanomaterials are important tools for enabling technological progress as they can provide dramatical...
Iron nanoparticles (NPs) prepared by inert gas condensation were studied using high resolution trans...
International audienceAddition of Co2(Co)9 and Ru3(CO)12 on preformed monodisperse iron(0) nanoparti...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
We present a gas-phase process for surface patterning and 3D self-assembly of nanoparticles (NPs) of...
Uniform superparamagnetic iron oxide nanoparticles were obtained by coprecipitation under synthesis ...
Directed self-assembly of nanoparticles (NPs) is a promising strategy for bottom-up fabrication of n...
This paper demonstrates fine size-controlled synthesis of superparamagnetic carbon-encapsulated iron...
A review is provided covering metal plasma production, the energetic condensation of metal plasmas,...
Highly dense 2D nanostructures are desirable in photocatalysis, water treatment and energy storage, ...