Distinctive thin layers of TiZr and Ni were deposited by using a magnetron sputtering method and a thermal annealing was applied to discover metallic films of quasicrystals. After a heat treatment in vacuum, 70 nm thick deposited layers were well mixed with nominal compositions of 49.7, 29.3 and 21.0 for Ti, Zr and Ni, respectively, which is very close with the one forming a quasicrystalline phase. The magnetization values were significantly decreased from 0.286 to 0.142 emu/mm(3) at 2000 Oe, after annealing, while a shape of magnetic hysteresis was maintained. It is believed that a different magnetic behavior after thermal annealing is due to the homogeneous mixing of atomic elements and possible existence of a metastable phase
We have investigated the magnetic and structural properties of polycrystalline Ni-Zn ferrite thin fi...
Metglas 2826 MB having a nominal composition of Fe40Ni38Mo4B18 is an excellent soft magnetic materia...
AbstractTiZr-based multicomponent metallic films composed of 3–5 constituents with almost equal atom...
The interesting structural property of quasicrystals is characterized by exhibition of a five-fold s...
Quasicrystals made with Ti, Zr and Ni are good candidate materials studying the magnetic properties ...
The phase stability, upon vacuum annealing up to 1000 degrees C, of nanostructured (Ti,Zr)(1-x)SixN ...
International audienceThe preparation in thin film form of the known icosahedral phase in Ti-Ni-Zr b...
Copyright © 2013 Somchai Chinsakolthanakorn et al. This is an open access article distributed under ...
Thermal stability of equidistant nanometer (nm) range Ti/Ni multilayer (ML) structures have been stu...
Thin films of Ni-rich Ti-Ni and Ti-rich Ti-Ni were prepared by sputtering. The films were annealed a...
Thin films of NiTi were deposited by DC magnetron sputtering from an equiatomic alloy target (Ni/Ti:...
This study aims to investigate the effects of nitrogen flow rate (0–2.5 sccm) on the structure and p...
Abstract. The structure and chemical composition of Ti-Ni-Zr thin films grown by thermal evaporation...
Abstract: Thin nanocrystalline Ni films with a thickness of ~340–360 nm are synthesized by ion sputt...
The sputter deposited NiZn ferrite thin films were studied as a function of annealing temperature. T...
We have investigated the magnetic and structural properties of polycrystalline Ni-Zn ferrite thin fi...
Metglas 2826 MB having a nominal composition of Fe40Ni38Mo4B18 is an excellent soft magnetic materia...
AbstractTiZr-based multicomponent metallic films composed of 3–5 constituents with almost equal atom...
The interesting structural property of quasicrystals is characterized by exhibition of a five-fold s...
Quasicrystals made with Ti, Zr and Ni are good candidate materials studying the magnetic properties ...
The phase stability, upon vacuum annealing up to 1000 degrees C, of nanostructured (Ti,Zr)(1-x)SixN ...
International audienceThe preparation in thin film form of the known icosahedral phase in Ti-Ni-Zr b...
Copyright © 2013 Somchai Chinsakolthanakorn et al. This is an open access article distributed under ...
Thermal stability of equidistant nanometer (nm) range Ti/Ni multilayer (ML) structures have been stu...
Thin films of Ni-rich Ti-Ni and Ti-rich Ti-Ni were prepared by sputtering. The films were annealed a...
Thin films of NiTi were deposited by DC magnetron sputtering from an equiatomic alloy target (Ni/Ti:...
This study aims to investigate the effects of nitrogen flow rate (0–2.5 sccm) on the structure and p...
Abstract. The structure and chemical composition of Ti-Ni-Zr thin films grown by thermal evaporation...
Abstract: Thin nanocrystalline Ni films with a thickness of ~340–360 nm are synthesized by ion sputt...
The sputter deposited NiZn ferrite thin films were studied as a function of annealing temperature. T...
We have investigated the magnetic and structural properties of polycrystalline Ni-Zn ferrite thin fi...
Metglas 2826 MB having a nominal composition of Fe40Ni38Mo4B18 is an excellent soft magnetic materia...
AbstractTiZr-based multicomponent metallic films composed of 3–5 constituents with almost equal atom...