International audienceProperties of nanoparticles in contact with other surfaces are crucial for various applications. Here, we show that electrical potential of individual nanoparticles or their aggregates (sizes 5–50 nm) can be locally switched between negative and positive via work functions of surrounding materials (Si, Au, and Pt). We employed novel methodology of Kelvin probe force microscopy (KPFM) to characterize surface potentials of hydrogenated, thermally oxidized, and partially graphitized detonation diamond nanoparticles (5 nm), as well as gold nanoparticles (20 nm) deposited on the substrates (Si, Au) from colloidal dispersions in water or methanol. We present a comprehensive model of the observed effect based on work function...
The work function of polyaniline nanoparticles in the emeraldine base state was determined by Kelvin...
International audienceThe characterization of charges in oxide supported metal nanoparticles (NP) is...
The plasmoelectric potential effect, based on all-metal nanostructures, is a newly discovered plasmo...
International audienceProperties of nanoparticles in contact with other surfaces are crucial for var...
International audienceElectrical potential of nanoparticles under relevant environment is substantia...
International audienceEvaluation of diamond nanoparticles (DNPs) electrical potential under ambient ...
We apply atomic force microscope for local electrostatic charging of oxygen-terminated nanocrystall...
The surface potential of nanoparticles plays a key role in numerous applications, such as drug deliv...
The tip apex dimensions and geometry of the conductive probe remain the major limitation to the reso...
Electrostatic interactions at the nanoscale can lead to novel properties and functionalities that bu...
International audienceElectrostatic interactions at the nanoscale canlead to novel properties and fu...
Atomic force microscopy and Kelvin probe experiments are applied to characterize hydrogen terminated...
Guided deposition of nanoparticles onto different substrates is of great importance for a variety of...
With the ability to image both topography and contact potential difference simultaneously, Kelvin pr...
The pick-and-place of components to build up complex working machines, such as the robotic arms on a...
The work function of polyaniline nanoparticles in the emeraldine base state was determined by Kelvin...
International audienceThe characterization of charges in oxide supported metal nanoparticles (NP) is...
The plasmoelectric potential effect, based on all-metal nanostructures, is a newly discovered plasmo...
International audienceProperties of nanoparticles in contact with other surfaces are crucial for var...
International audienceElectrical potential of nanoparticles under relevant environment is substantia...
International audienceEvaluation of diamond nanoparticles (DNPs) electrical potential under ambient ...
We apply atomic force microscope for local electrostatic charging of oxygen-terminated nanocrystall...
The surface potential of nanoparticles plays a key role in numerous applications, such as drug deliv...
The tip apex dimensions and geometry of the conductive probe remain the major limitation to the reso...
Electrostatic interactions at the nanoscale can lead to novel properties and functionalities that bu...
International audienceElectrostatic interactions at the nanoscale canlead to novel properties and fu...
Atomic force microscopy and Kelvin probe experiments are applied to characterize hydrogen terminated...
Guided deposition of nanoparticles onto different substrates is of great importance for a variety of...
With the ability to image both topography and contact potential difference simultaneously, Kelvin pr...
The pick-and-place of components to build up complex working machines, such as the robotic arms on a...
The work function of polyaniline nanoparticles in the emeraldine base state was determined by Kelvin...
International audienceThe characterization of charges in oxide supported metal nanoparticles (NP) is...
The plasmoelectric potential effect, based on all-metal nanostructures, is a newly discovered plasmo...