We report a simple strategy to synthesize highly crystalline ruthenium dioxide (RuO2) nanowires by atmospheric pressure chemical vapor deposition in supercooled liquid nanodroplets without the use of catalyst particles. The nanowires are single crystals with no discernible amorphous layers or defects. The pretreatment of the substrate is found to be effective for the position controlled growth of the nanowires as small as 10 nm. The RuO2 nanowires have extremely low electrical resistivity of 62.5 +/- 8.8 mu Omega.cm and uniform electrical materials characteristics, regardless of size. By passing high current (>10(7) A/cm(2)) through the nanowires, very small nanogaps of less than 5 rim are produced, which can be explained by a heuristic mod...
Ruthenium oxide nanotubes were fabricated by a single-step galvanostatic deposition using porous ano...
Growth mechanism of chemically-driven RuO2 nanowires is explored and used to fabricate three-dimensi...
The exploration of novel synthetic methodologies that control both size and shape of functional nano...
[[abstract]]Single-crystalline RuO2 nanowires were grown by using a thermal evaporation method. A co...
International audienceOxidation by a micro-post-discharge at atmospheric pressure of thin films of r...
We here demonstrate the formation of bundles of RuO2 nanoneedles (ca. 100 nm diameter) by a template...
We report a facile growth route to synthesize hierarchically grown single crystalline metallic RuO2 ...
International audienceRuO2 nanowires are synthesized by oxidation of ruthenium thanks to a micro-pos...
We demonstrate a facile synthesis of hierarchically driven single crystalline ruthenium dioxide (RuO...
We present the facile growth of highly single crystalline iridium dioxide (IrO 2) nanowires on SiO 2...
RuO2 nanostructures were synthesized by heating Ru nanoparticles in air at 280°C using Cu as catalys...
Various ruthenium dioxide nanostructures were locally grown by the oxidation with an atmospheric pre...
Highly single-crystalline ruthenium dioxide (RuO<sub>2</sub>) nanoneedles were successfully grown on...
We present the facile growth of highly single crystalline iridium dioxide (IrO<sub>2</sub>) nanowire...
The nanostructured iridium-ruthenium mixed metal oxide (IrxRu1-xO2, 0 <= x <= 1) is the most promisi...
Ruthenium oxide nanotubes were fabricated by a single-step galvanostatic deposition using porous ano...
Growth mechanism of chemically-driven RuO2 nanowires is explored and used to fabricate three-dimensi...
The exploration of novel synthetic methodologies that control both size and shape of functional nano...
[[abstract]]Single-crystalline RuO2 nanowires were grown by using a thermal evaporation method. A co...
International audienceOxidation by a micro-post-discharge at atmospheric pressure of thin films of r...
We here demonstrate the formation of bundles of RuO2 nanoneedles (ca. 100 nm diameter) by a template...
We report a facile growth route to synthesize hierarchically grown single crystalline metallic RuO2 ...
International audienceRuO2 nanowires are synthesized by oxidation of ruthenium thanks to a micro-pos...
We demonstrate a facile synthesis of hierarchically driven single crystalline ruthenium dioxide (RuO...
We present the facile growth of highly single crystalline iridium dioxide (IrO 2) nanowires on SiO 2...
RuO2 nanostructures were synthesized by heating Ru nanoparticles in air at 280°C using Cu as catalys...
Various ruthenium dioxide nanostructures were locally grown by the oxidation with an atmospheric pre...
Highly single-crystalline ruthenium dioxide (RuO<sub>2</sub>) nanoneedles were successfully grown on...
We present the facile growth of highly single crystalline iridium dioxide (IrO<sub>2</sub>) nanowire...
The nanostructured iridium-ruthenium mixed metal oxide (IrxRu1-xO2, 0 <= x <= 1) is the most promisi...
Ruthenium oxide nanotubes were fabricated by a single-step galvanostatic deposition using porous ano...
Growth mechanism of chemically-driven RuO2 nanowires is explored and used to fabricate three-dimensi...
The exploration of novel synthetic methodologies that control both size and shape of functional nano...