The atomic arrangement of the terminating facets on spinel Co3O4 nanocrystals is strongly linked to their catalytic performance. However, the spinel crystal structure offers multiple possible surface terminations depending on the synthesis. Thus, understanding the terminating surface atomic structure is essential in developing high-performance Co3O4 nanocrystals. In this work, we present direct atomic-scale observation of the surface terminations of Co3O4 nanoparticles supported on hollow carbon spheres (HCSs) using exit wavefunction reconstruction from aberration-corrected transmission electron microscopy focal-series. The restored high-resolution phases show distinct resolved oxygen and cobalt atomic columns. The data show that the struct...
Morphology-dependent phenomenon has been demonstrated in Co3O4 nanomaterials. The nanoparticles pred...
The composition of the reducing gas in the activation of Co Fischer-Tropsch synthesis catalysts dete...
Spinel type Co3O4(100) is successfully grown on Ag(100) at ultrahigh vacuum conditions and its struc...
The atomic arrangement of the terminating facets on spinel Co3O4 nanocrystals is strongly linked to ...
Cobalt oxide nanomaterials show high activity in several catalytic reactions thereby offering the po...
To explore the catalytic properties of cobalt oxide at the atomic level, we have studied the interac...
This article summarizes core aspects of beam-sample interactions in research that aims at exploiting...
Cobalt oxides are known to be active catalysts for a number of chemical reactions, but very little i...
Facet-dependent properties of novel metal or metal-oxide nanocrystals were discovered recently, and ...
Facet-dependent properties of novel metal or metal-oxide nanocrystals were discovered recently, and ...
The composition of the reducing gas in the activation of Co Fischer-Tropsch synthesis catalysts dete...
A novel approach to incorporate cobalt atoms into a magnetite single crystal is demonstrated by a co...
Identification of the crystal plane effect of the Co derived from Co3O4 nanocrystals (NCs) on Fische...
Nanoparticles of Co3O4 and CoO are of paramount importance because of their chemical properties prop...
The Co3O4 (110) single crystal surface has been characterized by low energy electron diffraction (LE...
Morphology-dependent phenomenon has been demonstrated in Co3O4 nanomaterials. The nanoparticles pred...
The composition of the reducing gas in the activation of Co Fischer-Tropsch synthesis catalysts dete...
Spinel type Co3O4(100) is successfully grown on Ag(100) at ultrahigh vacuum conditions and its struc...
The atomic arrangement of the terminating facets on spinel Co3O4 nanocrystals is strongly linked to ...
Cobalt oxide nanomaterials show high activity in several catalytic reactions thereby offering the po...
To explore the catalytic properties of cobalt oxide at the atomic level, we have studied the interac...
This article summarizes core aspects of beam-sample interactions in research that aims at exploiting...
Cobalt oxides are known to be active catalysts for a number of chemical reactions, but very little i...
Facet-dependent properties of novel metal or metal-oxide nanocrystals were discovered recently, and ...
Facet-dependent properties of novel metal or metal-oxide nanocrystals were discovered recently, and ...
The composition of the reducing gas in the activation of Co Fischer-Tropsch synthesis catalysts dete...
A novel approach to incorporate cobalt atoms into a magnetite single crystal is demonstrated by a co...
Identification of the crystal plane effect of the Co derived from Co3O4 nanocrystals (NCs) on Fische...
Nanoparticles of Co3O4 and CoO are of paramount importance because of their chemical properties prop...
The Co3O4 (110) single crystal surface has been characterized by low energy electron diffraction (LE...
Morphology-dependent phenomenon has been demonstrated in Co3O4 nanomaterials. The nanoparticles pred...
The composition of the reducing gas in the activation of Co Fischer-Tropsch synthesis catalysts dete...
Spinel type Co3O4(100) is successfully grown on Ag(100) at ultrahigh vacuum conditions and its struc...