[[abstract]]Iridium dioxide (IrO2) nanorods with pointed tips have been grown on Si( 100) and transition-metal-coated-Si(100) substrates, via metal-organic chemical vapor deposition (MOCVD), using (MeCp) Ir(COD) as the source reagent. The as-deposited nanorods were characterized using field-emission scanning electron microscopy (FESEM), transmission electron microscopy (TEM), X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS). FESEM micrographs revealed that the majority of the nanorods are a wedge shape in cross section and converge at top; occasionally several of them pack into a column of a spiral tip. The vertical alignment and packing density are significantly improved by prior deposition of a thin layer of Ti on Si. TE...
In this work, nanostructured iridium oxide films were fabricated by electrochemical deposition withi...
In In this paper, we present a comprehensive study on low hydration Ir/IrO2 electrodes, made of an I...
The morphology, crystallinity, and chemical state of well-defined Ir oxide nanoscale thin-film catal...
[[abstract]]Conductive iridium oxide films or one-dimensional nanorods are deposited using (MeCp)Ir(...
[[abstract]]We report in detail the synthesis and characterization of V-shaped IrO2 nanowedges (NWs)...
[[abstract]]Highly volatile iridium(l) carbonyl complexes (1-5) with three anionic fluorinated chela...
We present the facile growth of highly single crystalline iridium dioxide (IrO2) nanowires on SiO2/S...
Iridium Oxide (IrO2) is a metal oxide with a rutile crystalline structure, analogous to the TiO2 rut...
[[sponsorship]]原子與分子科學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway...
We have successfully grown a stable phase of polycrystalline IrO2 on Si (100) substrate. We have fou...
We present the facile growth of highly single crystalline iridium dioxide (IrO<sub>2</sub>) nanowire...
In this work, we disclose the growth of nanocrystalline rutile IrO2 at T = 150 C adopting a new plas...
International audienceThe growth and thermal stability of textured iridium thin films used as bottom...
In this study, growth of (100) oriented IrO2 using pulsed laser ablation technique is explored on (1...
A new heteroleptic Ir(I) compound exhibiting high volatility and defined thermal decomposition under...
In this work, nanostructured iridium oxide films were fabricated by electrochemical deposition withi...
In In this paper, we present a comprehensive study on low hydration Ir/IrO2 electrodes, made of an I...
The morphology, crystallinity, and chemical state of well-defined Ir oxide nanoscale thin-film catal...
[[abstract]]Conductive iridium oxide films or one-dimensional nanorods are deposited using (MeCp)Ir(...
[[abstract]]We report in detail the synthesis and characterization of V-shaped IrO2 nanowedges (NWs)...
[[abstract]]Highly volatile iridium(l) carbonyl complexes (1-5) with three anionic fluorinated chela...
We present the facile growth of highly single crystalline iridium dioxide (IrO2) nanowires on SiO2/S...
Iridium Oxide (IrO2) is a metal oxide with a rutile crystalline structure, analogous to the TiO2 rut...
[[sponsorship]]原子與分子科學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway...
We have successfully grown a stable phase of polycrystalline IrO2 on Si (100) substrate. We have fou...
We present the facile growth of highly single crystalline iridium dioxide (IrO<sub>2</sub>) nanowire...
In this work, we disclose the growth of nanocrystalline rutile IrO2 at T = 150 C adopting a new plas...
International audienceThe growth and thermal stability of textured iridium thin films used as bottom...
In this study, growth of (100) oriented IrO2 using pulsed laser ablation technique is explored on (1...
A new heteroleptic Ir(I) compound exhibiting high volatility and defined thermal decomposition under...
In this work, nanostructured iridium oxide films were fabricated by electrochemical deposition withi...
In In this paper, we present a comprehensive study on low hydration Ir/IrO2 electrodes, made of an I...
The morphology, crystallinity, and chemical state of well-defined Ir oxide nanoscale thin-film catal...