[[abstract]]Single-crystalline RuO2 nanowires were grown by using a thermal evaporation method. A control of the sizes (width and length) and the length-to-width ratio of the nanowires were achieved by tuning the growth time. A transmission electron microscope-scanning tunneling microscope technique invoking one-nanocontact electrical characterization was adopted to determine the room-temperature resistivity (similar to 100 mu Omega cm) of the nanowires. An e-beam lithography technique facilitating two-nanocontact measurements was performed to establish the metallic characteristic of individual nanowires. The authors found that a nanocontact may introduce high contact resistance, nonlinear current-voltage characteristics, and even semicondu...
The dependence of band intensities in the Raman spectrum of individual single-crystal ruthenium diox...
International audienceOxidation by a micro-post-discharge at atmospheric pressure of thin films of r...
The nanostructured iridium-ruthenium mixed metal oxide (IrxRu1-xO2, 0 <= x <= 1) is the most promisi...
We report a simple strategy to synthesize highly crystalline ruthenium dioxide (RuO2) nanowires by a...
Hydrothermally grown rutile TiO2 nanowires are intrinsically full of lattice defects, especially oxy...
Hydrothermally grown rutile TiO2 nanowires are intrinsically full of lattice defects, especially oxy...
We report a facile growth route to synthesize hierarchically grown single crystalline metallic RuO2 ...
We here demonstrate the formation of bundles of RuO2 nanoneedles (ca. 100 nm diameter) by a template...
We demonstrate a facile synthesis of hierarchically driven single crystalline ruthenium dioxide (RuO...
RuO2 nanostructures were synthesized by heating Ru nanoparticles in air at 280°C using Cu as catalys...
Metallic oxide compounds have interesting applications in catalysis, in optoelectronics, and as sens...
Various ruthenium dioxide nanostructures were locally grown by the oxidation with an atmospheric pre...
Monocrystalline n-TiO2 nanowires of the rutile phase (Rtl-NWs) grown by a scalable hydrothermal meth...
Thin-film ruthenium dioxide (RuO<sub>2</sub>) is a promising alternative material as a conductive el...
Highly single-crystalline ruthenium dioxide (RuO<sub>2</sub>) nanoneedles were successfully grown on...
The dependence of band intensities in the Raman spectrum of individual single-crystal ruthenium diox...
International audienceOxidation by a micro-post-discharge at atmospheric pressure of thin films of r...
The nanostructured iridium-ruthenium mixed metal oxide (IrxRu1-xO2, 0 <= x <= 1) is the most promisi...
We report a simple strategy to synthesize highly crystalline ruthenium dioxide (RuO2) nanowires by a...
Hydrothermally grown rutile TiO2 nanowires are intrinsically full of lattice defects, especially oxy...
Hydrothermally grown rutile TiO2 nanowires are intrinsically full of lattice defects, especially oxy...
We report a facile growth route to synthesize hierarchically grown single crystalline metallic RuO2 ...
We here demonstrate the formation of bundles of RuO2 nanoneedles (ca. 100 nm diameter) by a template...
We demonstrate a facile synthesis of hierarchically driven single crystalline ruthenium dioxide (RuO...
RuO2 nanostructures were synthesized by heating Ru nanoparticles in air at 280°C using Cu as catalys...
Metallic oxide compounds have interesting applications in catalysis, in optoelectronics, and as sens...
Various ruthenium dioxide nanostructures were locally grown by the oxidation with an atmospheric pre...
Monocrystalline n-TiO2 nanowires of the rutile phase (Rtl-NWs) grown by a scalable hydrothermal meth...
Thin-film ruthenium dioxide (RuO<sub>2</sub>) is a promising alternative material as a conductive el...
Highly single-crystalline ruthenium dioxide (RuO<sub>2</sub>) nanoneedles were successfully grown on...
The dependence of band intensities in the Raman spectrum of individual single-crystal ruthenium diox...
International audienceOxidation by a micro-post-discharge at atmospheric pressure of thin films of r...
The nanostructured iridium-ruthenium mixed metal oxide (IrxRu1-xO2, 0 <= x <= 1) is the most promisi...