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相关论文: Bulk Synthesis of Iron-based Superconductors

200 篇论文

Heterogeneous superconductivity onset is a common phenomenon in high-$T_c$ superconductors of both the cuprate and iron-based families. It is manifested by a fairly wide transition from the metallic to zero-resistance state. Usually, in…

超导电性 · 物理学 2023-07-04 P. D. Grigoriev , V. D. Kochev , A. P. Orlov , A. V. Frolov , A. A. Sinchenko

A theoretical approach with a microscopic model is proposed for the observed "high temperature superconductivity" in the Iron-based compounds. The above scheme takes into account two important aspects viz. (i) superconducting transition…

超导电性 · 物理学 2009-01-13 Ranjan Chaudhury

The dream of room temperature superconductors has inspired intense research effort to find routes for enhancing the superconducting transition temperature (Tc). Therefore, single-layer FeSe on a SrTiO3 substrate, with its extraordinarily…

超导电性 · 物理学 2019-03-12 Q. Song , T. L. Yu , X. Lou , B. P. Xie , H. C. Xu , C. H. P. Wen , Q. Yao , S. Y. Zhang , X. T. Zhu , J. D. Guo , R. Peng , D. L. Feng

Recently a big number of works devoted to search for new hydrides with record high-temperature superconductivity and at the same time the successful synthesis of potential high-TC superconducting FeH5 was reported. We present a systematic…

超导电性 · 物理学 2018-02-20 Alexander G. Kvashnin , Ivan A. Kruglov , Dmitrii V. Semenok , Artem R. Oganov

As the simplest iron-based superconductor, FeSe forms a tetragonal structure with transition temperature Tc ~ 8 K. With assistance of pressure, or other techniques, Tc can be greatly enhanced, even to above liquid nitrogen temperature. The…

超导电性 · 物理学 2017-10-16 J. Zhang , F. L. Liu , T. P. Ying , N. N. Li , Y. Xu , L. P. He , X. C. Hong , Y. J. Yu , M. X. Wang , J. Shen , W. G. Yang , S. Y. Li

Nine years ago, superconductors based on the magnetic element iron were discovered. A flurry of research activity has revealed an unprecedented diversity of chemical structures and physical properties. Similarly to other unconventional…

超导电性 · 物理学 2017-11-17 Anna Böhmer , Andreas Kreyssig

Superconductivity with zero resistance transition temperature (Tc) up to 8.4 K and 8.3 K can be obtained by doping cobalt and sodium in alfa-FeSe with the nominal composition of Fe0.92Co0.08Se and Na0.1FeSe, respectively. The electrical…

超导电性 · 物理学 2008-08-14 Zhanqiang Liu , Aihua Fang , Fuqiang Huang , Mianheng Jiang

We report here that a new superconducting phase with much higher Tc has been found in K intercalated FeSe compound with excess Fe. We successfully grew crystals by precisely controlling the starting amount of Fe. Besides the superconducting…

超导电性 · 物理学 2013-02-08 A. M. Zhang , T. L. Xia , K. Liu , W. Tong , Z. R. Yang , Q. M. Zhang

We report on the synthesis of large single crystals of a new FeSe-layer superconductor Cs0.8(FeSe0.98)2. X-ray powder diffraction, neutron powder-diffraction and magnetization measurements have been used to compare the crystal structure and…

Structures and parameters of some high and low temperature superconductors (HTSC, LTSC) are considered basing on the alternative estimate of the O2- ion radius magnitude (0.5-0.6) A. Phase transitions into the superconducting state are…

超导电性 · 物理学 2007-05-23 V. N. Bogomolov

New iron-arsenide superconductors of REFeAsO1-delta (RE = Ho, Y, Dy and Tb) were successfully synthesized by a high pressure synthesizing method with a special rapid quenching process, with the onset superconducting critical temperatures at…

Superconducting single crystals of Rb-intercalated FeSe compounds Rb$_x$Fe$_{2-y}$Se$_2$ were prepared by using a starting material of Rb$_2$Se as a Rb source. The superconducting properties and the surface microstructures were…

超导电性 · 物理学 2017-08-15 Masashi Tanaka , Hiroyuki Takeya , Yoshihiko Takano

Superconducting films emerge from the complex interplay of multiple growth parameters, making their optimization challenging. In iron-based superconductors, compressive strain is known to enhance the transition temperature (Tc) of FeSe…

The importance of electron-hole interband interactions is widely acknowledged for iron-pnictide superconductors with high transition temperatures (Tc). However, high-Tc superconductivity without hole carriers has been suggested in FeSe…

We report on successful synthesis under high pressure of a series of polycrystalline GdFeAs O_{1-x}F_x high-Tc superconductors with different oxygen deficiency x=0.12 - 0.16 and also with no fluorine. We have found that the high-pressure…

We introduce the thematic (open access) issue published in Comptes Rendus Physique. This issue is focused on the so-called Fe-based superconductors that, since the discovery of superconductivity in F-doped LaFeAsO by Hosono group in 2008,…

强关联电子 · 物理学 2016-03-03 Henri Alloul , Andres Cano

Herewith, we review the available experimental data of thermoelectric transport properties of iron-based superconductors and parent compounds. We discuss possible physical mechanisms into play in determining the Seebeck effect, from whence…

超导电性 · 物理学 2016-06-02 I. Pallecchi , F. Caglieris , M. Putti

In this paper, the $Fe$-containing superconductors $Fe_{0.5}Cu_{0.5}Ba_2YCu_2O_{7+\delta}$, $Fe_{0.5}Cu_{0.5}BaSrYCu_2O_{7+\delta}$ and $Fe_{0.5}Cu_{0.5}Sr_2YCu_2O_{7+\delta}$ were successfully prepared by common solid-state reaction…

超导电性 · 物理学 2009-11-10 Z. A. Ren , G. C. Che , Y. M. Ni , C. Dong , H. Chen , S. L. Jia , Z. X. Zhao

FeSe-derived superconductors show some unique behaviors relative to iron-pnictide superconductors, which are very helpful to understand the mechanism of superconductivity in high-Tc iron-based superconductors. The low-energy electronic…

超导电性 · 物理学 2014-12-17 X. F. Lu , N. Z. Wang , H. Wu , Y. P. Wu , D. Zhao , X. Z. Zeng , X. G. Luo , T. Wu , W. Bao , G. H. Zhang , F. Q. Huang , Q. Z. Huang , X. H. Chen

FeSe is employed as reference material to elucidate the observed high Tc superconducting behaviour of the related layered iron pnictides. The structural and ensuing semimetallic band structural forms are here rather unusual, with the…

超导电性 · 物理学 2015-05-14 John A. Wilson