Thin film growth of Fe-based superconductors: from fundamental properties to functional devices. A comparative review
S Haindl, M Kidszun, S Oswald, C Hess… - Reports on Progress …, 2014 - iopscience.iop.org
Fe-based superconductors bridge a gap between MgB 2 and the cuprate high temperature
superconductors as they exhibit multiband character and transition temperatures up to …
superconductors as they exhibit multiband character and transition temperatures up to …
Fe-based superconducting thin films—preparation and tuning of superconducting properties
Thin films of Fe-based superconductors (FBS) have been utilized in a plethora of different
experiments for a fundamental understanding of the superconductivity in these materials, as …
experiments for a fundamental understanding of the superconductivity in these materials, as …
Fabrication of Meter‐Long Class Fe (Se, Te)‐Coated Conductors with High Superconducting Performance
L Liu, J Ye, S Mou, R Zhu, C Miao, Y Li… - Advanced …, 2023 - Wiley Online Library
Previous research results have demonstrated that Fe (Se, Te) films with high critical current
density Jc can be realized on flexible metal substrates and are promising for high field …
density Jc can be realized on flexible metal substrates and are promising for high field …
Superconducting properties of iron chalcogenide thin films
P Mele - Science and Technology of Advanced Materials, 2012 - iopscience.iop.org
Abstract Iron chalcogenides, binary FeSe, FeTe and ternary FeTe x Se 1− x, FeTe x S 1− x
and FeTe: O x, are the simplest compounds amongst the recently discovered iron-based …
and FeTe: O x, are the simplest compounds amongst the recently discovered iron-based …
Evolution of superconductivity dependence on substrate temperature with thickness of Fe (Se, Te) coated conductors deposited on metal tapes
J Ye, S Mou, R Zhu, L Liu, Y Li - Journal of Applied Physics, 2022 - pubs.aip.org
Fe (Se, Te) films of different thicknesses were deposited on metal tapes by pulsed laser
deposition at different substrate temperatures. It is found that the substrate temperature …
deposition at different substrate temperatures. It is found that the substrate temperature …
Comparative review on thin film growth of iron-based superconductors
Since the discovery of the novel iron-based superconductors, both theoretical and
experimental studies have been performed intensively. Because iron-based …
experimental studies have been performed intensively. Because iron-based …
Thin film growth and device fabrication of iron-based superconductors
Iron-based superconductors have received much attention as a new family of high-
temperature superconductors owing to their unique properties and distinct differences from …
temperature superconductors owing to their unique properties and distinct differences from …
Effect of Bending Strain on Superconducting Transition Temperature of FeSe0.5Te0.5 Thin Films
Y Gao, H Liu, S Liu, C Mei, H Huang… - Advanced Functional …, 2025 - Wiley Online Library
Iron chalcogenide superconductors of iron‐based superconductor (IBS) family, have
attracted much attention recently. For the study of unconventional superconductors, uniaxial …
attracted much attention recently. For the study of unconventional superconductors, uniaxial …
Epitaxial Zr-doped CeO2 films by chemical solution deposition as buffer layers for Fe (Se, Te) film growth
A Vannozzi, S Prili, G Sylva, A Masi… - Superconductor …, 2020 - iopscience.iop.org
The epitaxial growth of Zr-doped CeO 2 (CZO) films by chemical solution deposition (CSD)
on single crystal substrates such as Al 2 O 3, SrTiO 3 and Y 2 O 3-stabilized ZrO 2 (YSZ) and …
on single crystal substrates such as Al 2 O 3, SrTiO 3 and Y 2 O 3-stabilized ZrO 2 (YSZ) and …
High-performance Fe(Se,Te) films on chemical CeO2-based buffer layers
The fabrication of a Fe-based coated conductor (CC) becomes possible when Fe (Se, Te) is
grown as an epitaxial film on a metallic oriented substrate. Thanks to the material's low …
grown as an epitaxial film on a metallic oriented substrate. Thanks to the material's low …