International audienceChemical and structural phase compositions of two single-crystalline samples prepared with different cooling rates from stoichiometric FeTe0.6Se0.4 melts were studied. Both types of samples were investigated in a very comprehensive way using magnetic and electrical transport measurements combined with X-ray, neutron and electron backscatter diffraction. We show that slowly cooled samples are homogeneous on a microscopic scale with only a small excess of iron. Those slowly cooled samples do not exhibit bulk superconductivity down to 1.8 K. In contrast, fast-cooled samples are superconducting below about 14 K but are composed of several chemical phases: they consist of a matrix preserving the crystal structure of slow-co...
The crystal structure of the superconductor FeSe0.44Te0.56 was redetermined by high-resolution X-ray...
The FeTe1/2Se1/2 samples are quenched during the vacuum sealed synthesis process to room temperature...
Due to the simple layered structure, isostructural FeSe and FeSe0.5Te0.5 are clue compounds for unde...
In the effort to unveil the relations between synthesis conditions, morpho-structural features and s...
We investigated the temperature dependence of resistivity in thin crystals of FeSe1-xTex (x = 1.0, 0...
Co-existence of superconductivity and magnetism has been reported in certain regions of the Fe(Se,Te...
Superconducting properties of the Fe(Se,Te) system are directly related to its microstructure. Howev...
The structural simplicity of FeCh (Ch = S, Se, Te), in which the conducting layers are not separated...
We report the synthesis as well as structural and physical properties of the bulk polycrystalline Fe...
Iron chalcogenides are of great interest because they have the simplest structure in the Fe based su...
The discovery of Superconductivity in the tetragonal phase FeSe provides a unique platform for the d...
We have drawn the phase diagram of tetragonal Fe1+xTe1-ySeyFe1+xTe1-ySey based on the investigations...
The physical and structural properties of Fe1.11Te and Fe1.11Te0.5Se0.5 have been investigated by me...
Iron-based superconductors are interesting due to their intrinsic magnetism, which often precedes su...
We have investigated the influence of Fe excess on the electrical transport and magnetism of Fe1+yTe...
The crystal structure of the superconductor FeSe0.44Te0.56 was redetermined by high-resolution X-ray...
The FeTe1/2Se1/2 samples are quenched during the vacuum sealed synthesis process to room temperature...
Due to the simple layered structure, isostructural FeSe and FeSe0.5Te0.5 are clue compounds for unde...
In the effort to unveil the relations between synthesis conditions, morpho-structural features and s...
We investigated the temperature dependence of resistivity in thin crystals of FeSe1-xTex (x = 1.0, 0...
Co-existence of superconductivity and magnetism has been reported in certain regions of the Fe(Se,Te...
Superconducting properties of the Fe(Se,Te) system are directly related to its microstructure. Howev...
The structural simplicity of FeCh (Ch = S, Se, Te), in which the conducting layers are not separated...
We report the synthesis as well as structural and physical properties of the bulk polycrystalline Fe...
Iron chalcogenides are of great interest because they have the simplest structure in the Fe based su...
The discovery of Superconductivity in the tetragonal phase FeSe provides a unique platform for the d...
We have drawn the phase diagram of tetragonal Fe1+xTe1-ySeyFe1+xTe1-ySey based on the investigations...
The physical and structural properties of Fe1.11Te and Fe1.11Te0.5Se0.5 have been investigated by me...
Iron-based superconductors are interesting due to their intrinsic magnetism, which often precedes su...
We have investigated the influence of Fe excess on the electrical transport and magnetism of Fe1+yTe...
The crystal structure of the superconductor FeSe0.44Te0.56 was redetermined by high-resolution X-ray...
The FeTe1/2Se1/2 samples are quenched during the vacuum sealed synthesis process to room temperature...
Due to the simple layered structure, isostructural FeSe and FeSe0.5Te0.5 are clue compounds for unde...