Highly stable and active low-temperature CO oxidation catalysts without noble metals are desirable to achieve a sustainable society. While zero-dimensional to three-dimensional Co3O4 nanoparticles show high catalytic activity, simple-structured nanocrystals easily self-aggregate and become sintered during catalytic reaction. Thus, complex three-dimensional nanostructures with high stability are of considerable interest. However, the controlled synthesis of complex nanoscale shapes remains a great challenge as no synthesis theory has been established. In this study, 100 nm raspberry-shaped nanoparticles composed of 7–8 nm Co3O4 nanoparticles were synthesized by hydrothermally treating cobalt glycolate solution with sodium sulfate. Surf...
Facet-dependent properties of novel metal or metal-oxide nanocrystals were discovered recently, and ...
Noble-metal-free functional oxides are active catalysts for CO oxidation at low temperatures. Spinel...
A facile and green template-free hydrothermal method was conducted to controllably synthesize spinel...
Highly stable and active low-temperature CO oxidation catalysts without noble metals are desirable t...
Hexagonal beta-Co(OH)(2) nanosheets with edge length of 50 nm and thickness of 10 nm were hydrotherm...
Porous cobalt oxide (Co3O4) nanorod (50-100 nm) and nanosheet-like (70-100 nm) particles were synthe...
Co3O4 nanorods showed surprisingly high activity for CO oxidation at a temperature as low as 196 K, ...
The design and fabrication of nanomaterials is a crucial issue in heterogeneous catalysis to achieve...
Co3O4 nanotubes with the inner of about 8 nm and the length of 200-500 nm were synthesized by oxidiz...
Free-standing, hierarchical, ultrathin, and two-dimensional (2D) polycrystalline Co3O4 flowers were ...
Alignment of Co3O4 nanoparticles to yield a range of anisotropic nanostructures with a controlled as...
A generic hydrothermal synthesis route has been successfully designed and utilized to in situ grow h...
Spinel type cobalt oxide (Co3O4) nanocrystals were controllably synthesized with different morpholog...
While Co3O4 represents one of the most promising catalysts for soot oxidation, conventional Co3O4 na...
Spinel-type Co3O4 finds applications in a wide range of fields, including clean energy conversion, w...
Facet-dependent properties of novel metal or metal-oxide nanocrystals were discovered recently, and ...
Noble-metal-free functional oxides are active catalysts for CO oxidation at low temperatures. Spinel...
A facile and green template-free hydrothermal method was conducted to controllably synthesize spinel...
Highly stable and active low-temperature CO oxidation catalysts without noble metals are desirable t...
Hexagonal beta-Co(OH)(2) nanosheets with edge length of 50 nm and thickness of 10 nm were hydrotherm...
Porous cobalt oxide (Co3O4) nanorod (50-100 nm) and nanosheet-like (70-100 nm) particles were synthe...
Co3O4 nanorods showed surprisingly high activity for CO oxidation at a temperature as low as 196 K, ...
The design and fabrication of nanomaterials is a crucial issue in heterogeneous catalysis to achieve...
Co3O4 nanotubes with the inner of about 8 nm and the length of 200-500 nm were synthesized by oxidiz...
Free-standing, hierarchical, ultrathin, and two-dimensional (2D) polycrystalline Co3O4 flowers were ...
Alignment of Co3O4 nanoparticles to yield a range of anisotropic nanostructures with a controlled as...
A generic hydrothermal synthesis route has been successfully designed and utilized to in situ grow h...
Spinel type cobalt oxide (Co3O4) nanocrystals were controllably synthesized with different morpholog...
While Co3O4 represents one of the most promising catalysts for soot oxidation, conventional Co3O4 na...
Spinel-type Co3O4 finds applications in a wide range of fields, including clean energy conversion, w...
Facet-dependent properties of novel metal or metal-oxide nanocrystals were discovered recently, and ...
Noble-metal-free functional oxides are active catalysts for CO oxidation at low temperatures. Spinel...
A facile and green template-free hydrothermal method was conducted to controllably synthesize spinel...