Instabilities of nanoscale ceria surface facets are examined on the atomic level. The electron beam and its induced atom migration are proposed as a readily available probe to emulate and quantify functional surface activity, which is crucial for, for example, catalytic performance. <i>In situ</i> phase contrast high-resolution transmission electron microscopy with spherical aberration correction is shown to be the ideal tool to analyze cationic reconstruction. Hydrothermally prepared ceria nanoparticles with particularly enhanced {100} surface exposure are explored. Experimental analysis of cationic reconstruction is supported by molecular dynamics simulations where the Madelung energy is shown to be directly related to the binding energy,...
Colloidal cerium oxide (CeO<sub>2</sub>) nanocrystals prepared by hydrothermal synthesis were charac...
The development of future generation catalysts and fuel cells based on oxide nanostructures is depen...
Using electron tomography combined with electron energy loss spectroscopy (EELS), we are able to map...
Instabilities of nanoscale ceria surface facets are examined on the atomic level. The electron beam ...
Instabilities of nanoscale ceria surface facets are examined on the atomic level. The electron beam ...
Instabilities of nanoscale ceria surface facets are examined on the atomic level. The electron beam ...
Hydrothermally prepared ceria cuboid nanoparticles were imaged in a 300 keV aberration corrected TEM...
Watching the changes: Aberration-corrected transmission electron microscopy is used to image CeO2 na...
Atomic hopping processes on ceria nanoparticle surfaces are observed by in situ phase contrast high-...
Cuboidal nanoparticles of ceria are examined by high resolution imaging and analysis to explore thei...
Cuboidal nanoparticles of ceria are examined by high resolution imaging and analysis to explore thei...
Cuboidal nanoparticles of ceria are examined by high resolution imaging and analysis to explore thei...
Aberration corrected HRTEM has been successfully applied to image the atomic motion at the edges and...
Aberration-corrected high-resolution transmission electron microscopy (HRTEM) was used to study the ...
Cuboidal nanoparticles of ceria are examined by high resolution imaging and analysis to explore thei...
Colloidal cerium oxide (CeO<sub>2</sub>) nanocrystals prepared by hydrothermal synthesis were charac...
The development of future generation catalysts and fuel cells based on oxide nanostructures is depen...
Using electron tomography combined with electron energy loss spectroscopy (EELS), we are able to map...
Instabilities of nanoscale ceria surface facets are examined on the atomic level. The electron beam ...
Instabilities of nanoscale ceria surface facets are examined on the atomic level. The electron beam ...
Instabilities of nanoscale ceria surface facets are examined on the atomic level. The electron beam ...
Hydrothermally prepared ceria cuboid nanoparticles were imaged in a 300 keV aberration corrected TEM...
Watching the changes: Aberration-corrected transmission electron microscopy is used to image CeO2 na...
Atomic hopping processes on ceria nanoparticle surfaces are observed by in situ phase contrast high-...
Cuboidal nanoparticles of ceria are examined by high resolution imaging and analysis to explore thei...
Cuboidal nanoparticles of ceria are examined by high resolution imaging and analysis to explore thei...
Cuboidal nanoparticles of ceria are examined by high resolution imaging and analysis to explore thei...
Aberration corrected HRTEM has been successfully applied to image the atomic motion at the edges and...
Aberration-corrected high-resolution transmission electron microscopy (HRTEM) was used to study the ...
Cuboidal nanoparticles of ceria are examined by high resolution imaging and analysis to explore thei...
Colloidal cerium oxide (CeO<sub>2</sub>) nanocrystals prepared by hydrothermal synthesis were charac...
The development of future generation catalysts and fuel cells based on oxide nanostructures is depen...
Using electron tomography combined with electron energy loss spectroscopy (EELS), we are able to map...