Group IVB metal nitrides have attracted great interest as alternative plasmonic materials. Among them, titanium nitride (TiN) stands out due to the ease of deposition and relative abundance of Ti compared to those of Zr and Hf metals. Even though they do not have Au or Ag-like plasmonic characteristics, they offer many advantages, from high mechanical stability to refractory behavior and complementary metal oxide semiconductor-compatible fabrication to tunable electrical/optical properties. In this study, we utilized reactive RF magnetron sputtering to deposit plasmonic TiN thin films. The flow rate and ratio of Ar/N2 and oxygen scavenging methods were optimized to improve the plasmonic performance of TiN thin films. The stoichiometry and s...
Titanium nitride (TiN) has emerged as a highly promising alternative to traditional plasmonic materi...
The author has been engaged in the development of a novel optical fiber probe using scanning near-fi...
Transition metal nitrides have recently been considered as potential replacements for noble metals a...
Group IVB metal nitrides have attracted great interest as alternative plasmonic materials. Among the...
Publication status: PublishedGroup IVB metal nitrides have attracted great interest as alternative p...
We examine the optical properties of nanostructures comprised of titanium nitride, TiN, an electrica...
Over the last years, promising concepts and practical approaches of miniaturized devices with remark...
Titanium nitride (TiN) is a promising plasmonic material alternative to gold and silver thanks to it...
New opportunities for plasmonic applications at high temperatures have stimulated interest in refrac...
Transition metal nitrides have recently garnered much interest as alternative materials for robust p...
Plasmonic materials display high local field enhancements and enable the sub-wavelength confinement ...
Titanium nitride (TiN) continues to prove itself as an inexpensive, robust, and efficient alternativ...
Conventionally used plasmonic materials generally have low thermal stability, low chemical durabilit...
We numerically investigate the sensitivity of surface plasmon sensors using transition metal nitride...
Titanium nitride (TiN) is a complementary metal-oxide-semiconductor (CMOS) compatible material with ...
Titanium nitride (TiN) has emerged as a highly promising alternative to traditional plasmonic materi...
The author has been engaged in the development of a novel optical fiber probe using scanning near-fi...
Transition metal nitrides have recently been considered as potential replacements for noble metals a...
Group IVB metal nitrides have attracted great interest as alternative plasmonic materials. Among the...
Publication status: PublishedGroup IVB metal nitrides have attracted great interest as alternative p...
We examine the optical properties of nanostructures comprised of titanium nitride, TiN, an electrica...
Over the last years, promising concepts and practical approaches of miniaturized devices with remark...
Titanium nitride (TiN) is a promising plasmonic material alternative to gold and silver thanks to it...
New opportunities for plasmonic applications at high temperatures have stimulated interest in refrac...
Transition metal nitrides have recently garnered much interest as alternative materials for robust p...
Plasmonic materials display high local field enhancements and enable the sub-wavelength confinement ...
Titanium nitride (TiN) continues to prove itself as an inexpensive, robust, and efficient alternativ...
Conventionally used plasmonic materials generally have low thermal stability, low chemical durabilit...
We numerically investigate the sensitivity of surface plasmon sensors using transition metal nitride...
Titanium nitride (TiN) is a complementary metal-oxide-semiconductor (CMOS) compatible material with ...
Titanium nitride (TiN) has emerged as a highly promising alternative to traditional plasmonic materi...
The author has been engaged in the development of a novel optical fiber probe using scanning near-fi...
Transition metal nitrides have recently been considered as potential replacements for noble metals a...