[[abstract]]RuO2 nanowires and RuO2/TiO2 core/shell nanowires are synthesized by reactive sputtering. The core/shell nanowires are obtained by coating RuO2 nanowires with TiO2. The mechanical, optical, electrical and optoelectronic properties of the nanowires are characterized, and indicate several potential applications of the nanowires.[[fileno]]2020315010014[[department]]材料科學工程學
We report a facile growth route to synthesize hierarchically grown single crystalline metallic RuO2 ...
The ability to fabricate heterostructured nanomaterials with each layer of the structure having some...
RuO2 nanostructures were synthesized by heating Ru nanoparticles in air at 280°C using Cu as catalys...
Growth mechanism of chemically-driven RuO2 nanowires is explored and used to fabricate three-dimensi...
Metallic oxide compounds have interesting applications in catalysis, in optoelectronics, and as sens...
[[abstract]]Electronic structures of the nanorods of RuO2 and IrO2 metallic oxides were investigated...
[[abstract]]In this work, TiO2 deposition on RuO2 nanorods with reactive sputtering was studied. The...
International audienceOxidation by a micro-post-discharge at atmospheric pressure of thin films of r...
Ruthenium oxide (RuO2) nanorods are an emergent technology in nanostructure devices. As the physical...
[[abstract]]Single-crystalline RuO2 nanowires were grown by using a thermal evaporation method. A co...
Highly single-crystalline ruthenium dioxide (RuO<sub>2</sub>) nanoneedles were successfully grown on...
The binary model system RuO<sub>2</sub>/TiO<sub>2</sub>(110) can be prepared with single crystallini...
The immobilization of miniscule quantities of RuO2 (~0.1%) onto one-dimensional (1D) TiO2 nanorods (...
We report a simple strategy to synthesize highly crystalline ruthenium dioxide (RuO2) nanowires by a...
Transition-metal oxides, such as RuO2, offer an exciting alternative to conventional metals for meta...
We report a facile growth route to synthesize hierarchically grown single crystalline metallic RuO2 ...
The ability to fabricate heterostructured nanomaterials with each layer of the structure having some...
RuO2 nanostructures were synthesized by heating Ru nanoparticles in air at 280°C using Cu as catalys...
Growth mechanism of chemically-driven RuO2 nanowires is explored and used to fabricate three-dimensi...
Metallic oxide compounds have interesting applications in catalysis, in optoelectronics, and as sens...
[[abstract]]Electronic structures of the nanorods of RuO2 and IrO2 metallic oxides were investigated...
[[abstract]]In this work, TiO2 deposition on RuO2 nanorods with reactive sputtering was studied. The...
International audienceOxidation by a micro-post-discharge at atmospheric pressure of thin films of r...
Ruthenium oxide (RuO2) nanorods are an emergent technology in nanostructure devices. As the physical...
[[abstract]]Single-crystalline RuO2 nanowires were grown by using a thermal evaporation method. A co...
Highly single-crystalline ruthenium dioxide (RuO<sub>2</sub>) nanoneedles were successfully grown on...
The binary model system RuO<sub>2</sub>/TiO<sub>2</sub>(110) can be prepared with single crystallini...
The immobilization of miniscule quantities of RuO2 (~0.1%) onto one-dimensional (1D) TiO2 nanorods (...
We report a simple strategy to synthesize highly crystalline ruthenium dioxide (RuO2) nanowires by a...
Transition-metal oxides, such as RuO2, offer an exciting alternative to conventional metals for meta...
We report a facile growth route to synthesize hierarchically grown single crystalline metallic RuO2 ...
The ability to fabricate heterostructured nanomaterials with each layer of the structure having some...
RuO2 nanostructures were synthesized by heating Ru nanoparticles in air at 280°C using Cu as catalys...