The parent compound of iron chalcogenide superconductors, Fe1+yTe, with a range of excess Fe concentrations exhibits intriguing structural and magnetic properties. Here, the interplay of magnetic and structural properties of Fe1.12Te single crystals have been probed by low-temperature synchrotron X-ray powder diffraction, magnetization, and specific heat measurements. Thermodynamic measurements reveal two distinct phase transitions, considered unique to samples possessing excess Fe content in the range of 0.11 <= y <= 0.13. On cooling, an antiferromagnetic transition, T-N approximate to 57K is observed. A closer examination of powder diffraction data suggests that the transition at TN is not purely magnetic, but accompanied by the commencem...
International audienceSingle-crystal x-ray diffraction in pulsed magnetic fields of up to 31 T was u...
International audienceSingle crystals of Fe1+xTe1-ySey have been grown with a controlled Fe excess a...
Reaction of iron-tellurium mixtures in the composition range from Fe0.41Te0.59 to Fe0.43Te0.57 follo...
The parent compound of iron chalcogenide superconductors, Fe1+yTe, with a range of excess Fe concent...
Specific heat, resistivity, magnetic susceptibility, linear thermal expansion (LTE), and high-resolu...
We used low-temperature synchrotron x-ray diffraction to investigate the structural phase transition...
The physical and structural properties of Fe1.11Te and Fe1.11Te0.5Se0.5 have been investigated by me...
Single crystal and powder samples of the series of iron chalcogenide superconductors with nominal co...
We investigated the evolution of the temperature-composition phase diagram of Fe1+y Te upon Se subst...
The physical and structural properties of Fe1.11Te and Fe1.11Te0.5Se0.5 have been investigated by me...
The nuclear and magnetic structures of Fe1+yTe1 12xSex compounds was analyzed between 2 and 300 K b...
This article reviews recent experimental investigations on two binary Fe-chalcogenides: FeSe and Fe1...
We report synthesis of non-superconducting parent compound of iron chalcogenide, i.e., FeTe single c...
We construct a phase diagram of the parent compound Fe1+xTe as a function of interstitial iron x in ...
We have drawn the phase diagram of tetragonal Fe1+xTe1-ySeyFe1+xTe1-ySey based on the investigations...
International audienceSingle-crystal x-ray diffraction in pulsed magnetic fields of up to 31 T was u...
International audienceSingle crystals of Fe1+xTe1-ySey have been grown with a controlled Fe excess a...
Reaction of iron-tellurium mixtures in the composition range from Fe0.41Te0.59 to Fe0.43Te0.57 follo...
The parent compound of iron chalcogenide superconductors, Fe1+yTe, with a range of excess Fe concent...
Specific heat, resistivity, magnetic susceptibility, linear thermal expansion (LTE), and high-resolu...
We used low-temperature synchrotron x-ray diffraction to investigate the structural phase transition...
The physical and structural properties of Fe1.11Te and Fe1.11Te0.5Se0.5 have been investigated by me...
Single crystal and powder samples of the series of iron chalcogenide superconductors with nominal co...
We investigated the evolution of the temperature-composition phase diagram of Fe1+y Te upon Se subst...
The physical and structural properties of Fe1.11Te and Fe1.11Te0.5Se0.5 have been investigated by me...
The nuclear and magnetic structures of Fe1+yTe1 12xSex compounds was analyzed between 2 and 300 K b...
This article reviews recent experimental investigations on two binary Fe-chalcogenides: FeSe and Fe1...
We report synthesis of non-superconducting parent compound of iron chalcogenide, i.e., FeTe single c...
We construct a phase diagram of the parent compound Fe1+xTe as a function of interstitial iron x in ...
We have drawn the phase diagram of tetragonal Fe1+xTe1-ySeyFe1+xTe1-ySey based on the investigations...
International audienceSingle-crystal x-ray diffraction in pulsed magnetic fields of up to 31 T was u...
International audienceSingle crystals of Fe1+xTe1-ySey have been grown with a controlled Fe excess a...
Reaction of iron-tellurium mixtures in the composition range from Fe0.41Te0.59 to Fe0.43Te0.57 follo...