[[abstract]]Electronic structures of the nanorods of RuO2 and IrO2 metallic oxides were investigated by x-ray absorption near-edge structure (XANES) and scanning photoelectron microscopy (SPEM). O K-, Ru, and Ir L3-edge XANES results reveal that hybridization between O 2p and metal t2g orbitals is weaker in IrO2 than in RuO2. The enhancement of the tip-region SPEM intensities relative to those in the sidewall regions for both RuO2 and IrO2 nanorods is found to extend over a large energy range in contrast to those of carbon nanotubes and ZnO nanorods, which are confined to deep below and near the Fermi level, respectively.[[booktype]]紙
Using high-resolution angle-resolved photoemission spectroscopy and ab initio calculation, we have s...
[[abstract]]RuO2 nanowires and RuO2/TiO2 core/shell nanowires are synthesized by reactive sputtering...
In this paper, we present a comprehensive study on low hydration Ir/IrO2 electrodes, made of an Ir c...
IrO_2 is one of the most active catalysts for the oxygen evolution reaction (OER) and remains the on...
The delicate interplay of electronic charge, spin, and orbital degrees of freedom is in the heart of...
Metallic oxide compounds have interesting applications in catalysis, in optoelectronics, and as sens...
Iridium-based materials are among the most active and stable electrocatalysts for the oxygen evoluti...
We investigated the electronic structure of IrO 2 to address the controversy regarding spin-orbit ...
Growth mechanism of chemically-driven RuO2 nanowires is explored and used to fabricate three-dimensi...
Iridium oxide based electrodes are among the most promising candidates for electrocatalyzing the oxy...
A metal-insulator transition is observed in spin-orbit-coupled IrO_2 thin films upon reduction of th...
Iridium oxide based electrodes are among the most promising candidates for electrocatalyzing the oxy...
The delicate interplay of electronic charge, spin, and orbital degrees of freedom is in the heart of...
Resistivities (ρ) and Hall coefficients (RH) of polycrystalline Ru and RuO2 thin films were measure...
Iridium Oxide (IrO2) is a metal oxide with a rutile crystalline structure, analogous to the TiO2 rut...
Using high-resolution angle-resolved photoemission spectroscopy and ab initio calculation, we have s...
[[abstract]]RuO2 nanowires and RuO2/TiO2 core/shell nanowires are synthesized by reactive sputtering...
In this paper, we present a comprehensive study on low hydration Ir/IrO2 electrodes, made of an Ir c...
IrO_2 is one of the most active catalysts for the oxygen evolution reaction (OER) and remains the on...
The delicate interplay of electronic charge, spin, and orbital degrees of freedom is in the heart of...
Metallic oxide compounds have interesting applications in catalysis, in optoelectronics, and as sens...
Iridium-based materials are among the most active and stable electrocatalysts for the oxygen evoluti...
We investigated the electronic structure of IrO 2 to address the controversy regarding spin-orbit ...
Growth mechanism of chemically-driven RuO2 nanowires is explored and used to fabricate three-dimensi...
Iridium oxide based electrodes are among the most promising candidates for electrocatalyzing the oxy...
A metal-insulator transition is observed in spin-orbit-coupled IrO_2 thin films upon reduction of th...
Iridium oxide based electrodes are among the most promising candidates for electrocatalyzing the oxy...
The delicate interplay of electronic charge, spin, and orbital degrees of freedom is in the heart of...
Resistivities (ρ) and Hall coefficients (RH) of polycrystalline Ru and RuO2 thin films were measure...
Iridium Oxide (IrO2) is a metal oxide with a rutile crystalline structure, analogous to the TiO2 rut...
Using high-resolution angle-resolved photoemission spectroscopy and ab initio calculation, we have s...
[[abstract]]RuO2 nanowires and RuO2/TiO2 core/shell nanowires are synthesized by reactive sputtering...
In this paper, we present a comprehensive study on low hydration Ir/IrO2 electrodes, made of an Ir c...