The increasing interest in atomic layer deposition (ALD) of Pt for the controlled synthesis of supported nanoparticles for catalysis demands an in-depth understanding of the nucleation controlled growth behaviour. We present an in situ investigation of Pt ALD on planar Si substrates, with native SiO2, by means of X-ray fluorescence (XRF) and grazing incidence small-angle X-ray scattering (GISAXS), using a custom-built synchrotron-compatible high-vacuum ALD setup and focusing on the thermal Pt ALD process, comprising (methylcyclopentadienyl)trimethylplatinum (MeCpPtMe3) and O2 gas at 300 °C. The evolution in key scattering features provides insights into the growth kinetics of Pt deposits from small nuclei to isolated islands and coalesced w...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
The deposition of Pd and Pt nanoparticles by atomic layer deposition (ALD) has been studied extensiv...
A detailed understanding of the growth of noble metals by atomic layer deposition (ALD) is key for v...
The increasing interest in atomic layer deposition (ALD) of Pt for the controlled synthesis of suppo...
The increasing interest in atomic layer deposition (ALD) of Pt for the controlled synthesis of suppo...
The increasing interest in atomic layer deposition (ALD) of Pt for the controlled synthesis of suppo...
Synthetic methods that allow for the controlled design of well-defined Pt nanoparticles are highly d...
The deposition of Pd and Pt nanoparticles by atomic layer deposition (ALD) has been studied extensiv...
The growth of supported Pt nanoparticles at room temperature employing a three-step atomic layer dep...
The nucleation and growth of Pt atomic layer deposition (ALD) on Al2O3 substrates was studied using ...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
Downscaling of supported Pt structures to the nanoscale is motivated by the augmentation of the cata...
Platinum is a material that finds many applications in the fields of nanoelectronics and catalysis d...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
The deposition of Pd and Pt nanoparticles by atomic layer deposition (ALD) has been studied extensiv...
A detailed understanding of the growth of noble metals by atomic layer deposition (ALD) is key for v...
The increasing interest in atomic layer deposition (ALD) of Pt for the controlled synthesis of suppo...
The increasing interest in atomic layer deposition (ALD) of Pt for the controlled synthesis of suppo...
The increasing interest in atomic layer deposition (ALD) of Pt for the controlled synthesis of suppo...
Synthetic methods that allow for the controlled design of well-defined Pt nanoparticles are highly d...
The deposition of Pd and Pt nanoparticles by atomic layer deposition (ALD) has been studied extensiv...
The growth of supported Pt nanoparticles at room temperature employing a three-step atomic layer dep...
The nucleation and growth of Pt atomic layer deposition (ALD) on Al2O3 substrates was studied using ...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
Downscaling of supported Pt structures to the nanoscale is motivated by the augmentation of the cata...
Platinum is a material that finds many applications in the fields of nanoelectronics and catalysis d...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
The deposition of Pd and Pt nanoparticles by atomic layer deposition (ALD) has been studied extensiv...
A detailed understanding of the growth of noble metals by atomic layer deposition (ALD) is key for v...