In this study, we demonstrated the formation of a new type of AuAg@Ag nanostructure in titanium nitride (TiN) thin films using sequential implantation of Au and Ag ions. The TiN films deposited by DC reactive sputtering were sequentially implanted with 200 keV gold ions at fluences of 0.5 × 10 16 and 1 × 10 16 ions/cm 2 and 150 keV silver ions at fluences of 1 × 10 16 , 2 × 10 16 , 3 × 10 16 , and 4 × 10 16 ions/cm 2 . Formation of spherical-like particles with dimensions below 10 nm, homogeneously distributed along the ion track of implanted ions is verified by high resolution transmission electron microscopy. Specific nanostructure containing Au–Ag alloy in the center of the particle and only silver on the periphery was found in the TiN s...
AuSn and AuSn2 thin films (5 nm) were used as precursors during the formation of semiconducting meta...
Optical metamaterials have triggered extensive studies driven by their fascinating electromagnetic p...
Titanium nitride thin films are widely used in biomedical implants because of their biocompatibility...
In this study, we demonstrated the formation of a new type of AuAg@Ag nanostructure in titanium nitr...
Formation of Au-Ag alloy nanoparticles in TiN thin films is demonstrated through sequential implanta...
Titanium nitride (TiN) thin films thickness of similar to 260 nm prepared by dc reactive sputtering ...
Tin (Sn) has a low melting temperature, i.e., 231.9 degrees C for the bulk, and the capability to fo...
Au-Ag alloy nanoparticles were formed into amorphous silicon by sequential ion implantation of Au an...
Formation of nanocrystalline TiN at low temperatures was demonstrated by combining Pulsed Laser Depo...
Formation of nanocrystalline TiN at low temperatures was demonstrated by combining Pulsed Laser Depo...
Titanium nitride (TiN) has emerged as alternative plasmonic material in the visible and near-infrare...
International audienceThin films composed of titanium nitride doped with silver were deposited by DC...
The recrystallization of the structure of an X-ray amorphous AlN–TiB2–TiSi2 coating containing short...
The surface plasmon resonance of noble-metal nanoparticles depends on nanoscale size, morphology, an...
Polycrystalline titaniumnitride (TiN) layers of 240 nmthickness and columnar microstructure were dep...
AuSn and AuSn2 thin films (5 nm) were used as precursors during the formation of semiconducting meta...
Optical metamaterials have triggered extensive studies driven by their fascinating electromagnetic p...
Titanium nitride thin films are widely used in biomedical implants because of their biocompatibility...
In this study, we demonstrated the formation of a new type of AuAg@Ag nanostructure in titanium nitr...
Formation of Au-Ag alloy nanoparticles in TiN thin films is demonstrated through sequential implanta...
Titanium nitride (TiN) thin films thickness of similar to 260 nm prepared by dc reactive sputtering ...
Tin (Sn) has a low melting temperature, i.e., 231.9 degrees C for the bulk, and the capability to fo...
Au-Ag alloy nanoparticles were formed into amorphous silicon by sequential ion implantation of Au an...
Formation of nanocrystalline TiN at low temperatures was demonstrated by combining Pulsed Laser Depo...
Formation of nanocrystalline TiN at low temperatures was demonstrated by combining Pulsed Laser Depo...
Titanium nitride (TiN) has emerged as alternative plasmonic material in the visible and near-infrare...
International audienceThin films composed of titanium nitride doped with silver were deposited by DC...
The recrystallization of the structure of an X-ray amorphous AlN–TiB2–TiSi2 coating containing short...
The surface plasmon resonance of noble-metal nanoparticles depends on nanoscale size, morphology, an...
Polycrystalline titaniumnitride (TiN) layers of 240 nmthickness and columnar microstructure were dep...
AuSn and AuSn2 thin films (5 nm) were used as precursors during the formation of semiconducting meta...
Optical metamaterials have triggered extensive studies driven by their fascinating electromagnetic p...
Titanium nitride thin films are widely used in biomedical implants because of their biocompatibility...