One of the technologically most important requirements for the application of supported metal nanoparticles (NPs) to the field of heterogeneous catalysis is the achievement of thermally and chemically stable systems under reaction conditions. For this purpose, a thorough understanding of the different pathways underlying coarsening phenomena is needed. In particular, in depth knowledge must be achieved on the role of the NP synthesis method, geometrical features of the NPs (size and shape), initial NP dispersion on the support (interparticle distance), support pre-treatment (affecting its morphology and chemical state), and reaction environment (gaseous or liquid medium, pressure, temperature). This study provides examples of the stability ...
The sintering of precious metal catalysts is an important problem for the automotive and chemical pr...
The significance of supported metal catalysts in heterogeneous catalysis calls for in-depth understa...
Understanding how nanostructure and atomic-scale defects of the support affect metal catalyst nanopa...
One of the technologically most important requirements for the application of supported metal nanopa...
One of the technologically most important requirements for the application of supported metal nanopa...
One of the technologically most important requirements for the application of oxide-supported metal ...
One of the technologically most important requirements for the application of oxide-supported metal ...
One of the technologically most important requirements for the application of oxide-supported metal ...
The thermal and chemical stability of micelle-synthesized size-selected Pt nanoparticles (NPs) suppo...
The thermal and chemical stability of micelle-synthesized size-selected Pt nanoparticles (NPs) suppo...
The thermal and chemical stability of micelle-synthesized size-selected Pt nanoparticles (NPs) suppo...
Studies were performed on three different catalysts in order to determine their stability and sinter...
Understanding how nanostructure and atomic-scale defects of the support affect metal catalyst nanopa...
Understanding how nanostructure and atomic-scale defects of the support affect metal catalyst nanopa...
Heterogeneous catalysis plays a major role in modern society, for example in chemical production, su...
The sintering of precious metal catalysts is an important problem for the automotive and chemical pr...
The significance of supported metal catalysts in heterogeneous catalysis calls for in-depth understa...
Understanding how nanostructure and atomic-scale defects of the support affect metal catalyst nanopa...
One of the technologically most important requirements for the application of supported metal nanopa...
One of the technologically most important requirements for the application of supported metal nanopa...
One of the technologically most important requirements for the application of oxide-supported metal ...
One of the technologically most important requirements for the application of oxide-supported metal ...
One of the technologically most important requirements for the application of oxide-supported metal ...
The thermal and chemical stability of micelle-synthesized size-selected Pt nanoparticles (NPs) suppo...
The thermal and chemical stability of micelle-synthesized size-selected Pt nanoparticles (NPs) suppo...
The thermal and chemical stability of micelle-synthesized size-selected Pt nanoparticles (NPs) suppo...
Studies were performed on three different catalysts in order to determine their stability and sinter...
Understanding how nanostructure and atomic-scale defects of the support affect metal catalyst nanopa...
Understanding how nanostructure and atomic-scale defects of the support affect metal catalyst nanopa...
Heterogeneous catalysis plays a major role in modern society, for example in chemical production, su...
The sintering of precious metal catalysts is an important problem for the automotive and chemical pr...
The significance of supported metal catalysts in heterogeneous catalysis calls for in-depth understa...
Understanding how nanostructure and atomic-scale defects of the support affect metal catalyst nanopa...