Titanium nitride (TiN) is a ceramic with high electrical conductivity which in nanoparticle form, exhibits localized surface plasmon resonances (LSPRs) in the visible region of the solar spectrum. The ceramic nature of TiN coupled with its dielectric loss factor being comparable to that of gold, render it attractive for CMOS polarizers, refractory plasmonics, surface-enhanced Raman scattering and a whole host of sensing applications. We report core\u2013shell TiO2\u2013TiN nanotube arrays exhibiting LSPR peaks in the range 775\u2013830 nm achieved by a simple, solution-based, low cost, large area-compatible fabrication route that does not involve laser-writing or lithography. Self-organized, highly ordered TiO2 nanotube arrays were grown by...
Abstract The unique optical properties of metal nitrides enhance many photoelectrical applications. ...
TiO2 nanotube arrays, grown on titanium metal by anodizing, have been widely used as a photoelectrod...
Two-dimensional arrays of hollow nanotubes made of TiO 2 are a promising platform for sensin...
Titanium nitride (TiN) is a ceramic with high electrical conductivity which in nanoparticle form, ex...
Developing colloidal plasmonic nanomaterials with high carrier density that show optical resonances ...
International audienceThe miniaturization of optical components to control and manipulate light ampl...
Titanium nitride (TiN) is a new plasmonic material with advantages due to its greater thermal and ch...
Titanium nitride (TiN) continues to prove itself as an inexpensive, robust, and efficient alternativ...
We examine the optical properties of nanostructures comprised of titanium nitride, TiN, an electrica...
The concentration and chemical state of nitrogen represent critical factors to control the band-gap ...
TiO2 nanotube arrays, grown on titanium metal by anodizing, have been widely used as a photoelectrod...
Localized surface plasmon resonances (LSPR) in TiO2 nanorod and nanotube arrays decorated by gold na...
International audienceSelf-organized Sn-doped TiO2 nanotubes (nts) were fabricated for the first tim...
Conventionally used plasmonic materials generally have low thermal stability, low chemical durabilit...
Group IVB metal nitrides have attracted great interest as alternative plasmonic materials. Among the...
Abstract The unique optical properties of metal nitrides enhance many photoelectrical applications. ...
TiO2 nanotube arrays, grown on titanium metal by anodizing, have been widely used as a photoelectrod...
Two-dimensional arrays of hollow nanotubes made of TiO 2 are a promising platform for sensin...
Titanium nitride (TiN) is a ceramic with high electrical conductivity which in nanoparticle form, ex...
Developing colloidal plasmonic nanomaterials with high carrier density that show optical resonances ...
International audienceThe miniaturization of optical components to control and manipulate light ampl...
Titanium nitride (TiN) is a new plasmonic material with advantages due to its greater thermal and ch...
Titanium nitride (TiN) continues to prove itself as an inexpensive, robust, and efficient alternativ...
We examine the optical properties of nanostructures comprised of titanium nitride, TiN, an electrica...
The concentration and chemical state of nitrogen represent critical factors to control the band-gap ...
TiO2 nanotube arrays, grown on titanium metal by anodizing, have been widely used as a photoelectrod...
Localized surface plasmon resonances (LSPR) in TiO2 nanorod and nanotube arrays decorated by gold na...
International audienceSelf-organized Sn-doped TiO2 nanotubes (nts) were fabricated for the first tim...
Conventionally used plasmonic materials generally have low thermal stability, low chemical durabilit...
Group IVB metal nitrides have attracted great interest as alternative plasmonic materials. Among the...
Abstract The unique optical properties of metal nitrides enhance many photoelectrical applications. ...
TiO2 nanotube arrays, grown on titanium metal by anodizing, have been widely used as a photoelectrod...
Two-dimensional arrays of hollow nanotubes made of TiO 2 are a promising platform for sensin...