The influence of pressure and type of inert gas (Ar and Kr) on the morphology and size distribution of nanoparticles produced in a nanocluster source is studied experimentally. The experimental data are used to validate the model of cluster formation from a supersaturated atomic vapor in an inert buffer gas, which has been developed in our previous paper. The model predictions are in accordance with the experimental findings. (C) 2015 American Vacuum Society.</p
The Haberland type gas aggregation cluster source (HGAS), which was invented in 1992 by Haberland et...
We introduce a new type of cluster beam source based on the assembly of (metal) clusters within a co...
Formation of carbon nanoclusters in a single-laser-pulse created ablation plume was studied both in ...
The influence of pressure and type of inert gas (Ar and Kr) on the morphology and size distribution ...
This paper presents a detailed model of cluster formation from a supersaturated atomic vapor in an i...
Although copper nanoparticles are used as model nanomaterial because of their small nucleation barri...
Copper nanoclusters are used widely in applications such as glucose and gas sensors. A physical meth...
Nanometer size-selected Cu clusters in the size range of 1–5 nm have been produced by a plasma-gasco...
Atomic nanoclusters exhibit large surface to volume ratio which enhances their ability to interact w...
13 pags., 8 figs. -- Open Access funded by Creative Commons Atribution Licence 4.0The increasing de...
In this thesis aberration corrected scanning transmission electron microscopy is employed to study t...
Since the mean, standard deviation, and modality of nanoparticle size distributions can vary greatly...
In this paper, we study the mechanisms of growth of Ag nanoclusters in a solid Ar matrix and the emi...
Nanoclusters zijn deeltjes die bestaan uit enkele tientallen tot enkele duizenden atomen. Ze worden ...
This work reports on the production of alloy Ti-Cu nanoclusters by magnetron sputtering and plasma-g...
The Haberland type gas aggregation cluster source (HGAS), which was invented in 1992 by Haberland et...
We introduce a new type of cluster beam source based on the assembly of (metal) clusters within a co...
Formation of carbon nanoclusters in a single-laser-pulse created ablation plume was studied both in ...
The influence of pressure and type of inert gas (Ar and Kr) on the morphology and size distribution ...
This paper presents a detailed model of cluster formation from a supersaturated atomic vapor in an i...
Although copper nanoparticles are used as model nanomaterial because of their small nucleation barri...
Copper nanoclusters are used widely in applications such as glucose and gas sensors. A physical meth...
Nanometer size-selected Cu clusters in the size range of 1–5 nm have been produced by a plasma-gasco...
Atomic nanoclusters exhibit large surface to volume ratio which enhances their ability to interact w...
13 pags., 8 figs. -- Open Access funded by Creative Commons Atribution Licence 4.0The increasing de...
In this thesis aberration corrected scanning transmission electron microscopy is employed to study t...
Since the mean, standard deviation, and modality of nanoparticle size distributions can vary greatly...
In this paper, we study the mechanisms of growth of Ag nanoclusters in a solid Ar matrix and the emi...
Nanoclusters zijn deeltjes die bestaan uit enkele tientallen tot enkele duizenden atomen. Ze worden ...
This work reports on the production of alloy Ti-Cu nanoclusters by magnetron sputtering and plasma-g...
The Haberland type gas aggregation cluster source (HGAS), which was invented in 1992 by Haberland et...
We introduce a new type of cluster beam source based on the assembly of (metal) clusters within a co...
Formation of carbon nanoclusters in a single-laser-pulse created ablation plume was studied both in ...