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Related papers: A New ZrCuSiAs-Type Superconductor: ThFeAsN

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We have discovered a new iron pnictide oxide superconductor (Fe2As2)(Sr4(Mg,Ti)2O6). This material is isostructual with (Fe2As2)(Sr4M2O6) (M = Sc, Cr), which was found in our previous study. The structure of this compound is tetragonal with…

Superconductivity · Physics 2010-03-26 Shinya Sato , Hiraku Ogino , Naoto Kawaguchi , Yukari Katsura , Kohji Kishio , Jun-ichi Shimoyama

The recently discovered quaternary arsenide oxide superconductor La[O1-xFx]FeAs with the superconducting critical transition temperature (Tc) of 26 K [1], has been quickly expanded to another high-Tc superconducting system beyond copper…

We report neutron diffraction and transport results on the newly discovered superconducting nitride ThFeAsN with $T_c=$ 30 K. No magnetic transition, but a weak structural distortion around 160 K, is observed cooling from 300 K to 6 K.…

A new iron arsenide superconducting system LiFeAs was found that crystallizes into a tetragonal structure with space group P4/nmm. The superconductivity with Tc up to 18 K was observed in the compounds. This simple 111 type layered iron…

Superconductivity · Physics 2009-11-13 X. C. Wang , Q. Q. Liu , Y. X. Lv , W. B. Gao , L. X. Yang , R. C. Yu , F. Y. Li , C. Q. Jin

We have discovered a new iron pnictide oxide superconductor (Fe2As2)(Sr4(Mg,Ti)2O6). This material is isostructual with (Fe2As2)(Sr4M2O6) (M = Sc, Cr, V), which were found in previous studies. The structure of this compound is tetragonal…

Since the discovery of superconductivity\cite{1} at 26 K in oxy-pnictide $LaFeAsO_{1-x}F_x$, enormous interests have been stimulated in the fields of condensed matter physics and material sciences. Among the five different structures in…

Superconductivity · Physics 2009-09-29 Xiyu Zhu , Fei Han , Peng Cheng , Gang Mu , Bing Shen , Hai-Hu Wen

A new layered iron arsenide oxide (Fe2As2)(Ca4(Mg,Ti)3Oy) was discovered. Its crystal structure is tetragonal with a space group of I4/mmm consisted of the anti-fluorite type FeAs layer and blocking layer of triple perovskite cells and is…

We have synthesized CuFeAs, a new iron-pnictide compound with a layered tetragonal Cu2Sb type structure (space group P4/nmm: a = b = 3.7442(2) {\AA} and c = 5.8925(4) {\AA}) that is identical to that of 111-type iron-based superconductors.…

Superconductivity · Physics 2015-09-07 Gohil S Thakur , Zeba Haque , L C Gupta , A K Ganguli

The newest homologous series of superconducting As-pnictides, LiFeAs (Li111) and NaFeAs (Na111) have been synthesized and investigated. Both crystallize with the layered tetragonal anti-PbFCl-type structure in P4/nmm space group.…

Superconductivity · Physics 2015-05-13 C. W. Chu , F. Chen , M. Gooch , A. M. Guloy , B. Lorenz , B. Lv , K. Sasmal , Z. J. Tang , J. H. Tapp , Y. Y. Xue

A new iron pnictide LiFeP superconductor was found. The compound crystallizes into a Cu2Sb structure containing an FeP layer showing superconductivity with maximum Tc of 6K. This is the first 111 type iron pnictide superconductor containing…

Superconductivity · Physics 2015-05-14 Z. Deng , X. C. Wang , Q. Q. Liu , S. J. Zhang , Y. X. Lv , J. L. Zhu , R. C. Yu , C. Q. Jin

Unlike the widely studied ReFeAsO series, the newly discovered iron-based superconductor ThFeAsN exhibits a remarkably high critical temperature of 30 K, without chemical doping or external pressure. Here we investigate in detail its…

Superconductivity · Physics 2017-08-01 T. Shiroka , T. Shang , C. Wang , G. -H. Cao , I. Eremin , H. -R. Ott , J. Mesot

We have synthesized a quaternary fluoroarsenide SrFeAsF with the ZrCuSiAs-type structure (P4/nmm, a = 0.3999 and c = 0.8973 nm), which is composed of an alternately stacked (FeAs)- and (SrF)+ layers, analogous to the FeAs-based…

Superconductivity · Physics 2008-11-10 Satoru Matsuishi , Yasunori Inoue , Takatoshi Nomura , Masahiro Hirano , Hideo Hosono

The synthesis and properties of LiFeAs, a high-Tc Fe-based superconducting stoichiometric compound, are reported. Single crystal x-ray studies reveal that it crystallizes in the tetragonal PbFCl type (P4/nmm) with a=3.7914(7) A and…

Superconductivity · Physics 2008-08-25 Joshua H. Tapp , Zhongjia Tang , Bing Lv , Kalyan Sasmal , Bernd Lorenz , Paul C. W. Chu , Arnold M. Guloy

Superconductivity was achieved in Ti-doped iron-arsenide compound Sr4Cr0.8Ti1.2O6Fe2As2 (abbreviated as Cr-FeAs-42622). The x-ray diffraction measurement shows that this material has a layered structure with the space group of…

Superconductivity · Physics 2015-05-13 Xiyu Zhu , Fei Han , Gang Mu , Peng Cheng , Bing Shen , Bin Zeng , Hai-Hu Wen

A new iron-based superconductor (Ca,Pr)FeAs2 was discovered. Plate-like crystals of the new phase were obtained and crystal structure was investigated by single-crystal X-ray diffraction analysis. The structure was identified as the…

We report superconductivity in the novel 112-type iron-based compound Ca1-xLaxFeAs2. Single-crystal X-ray diffraction analysis revealed that the compound crystallizes in a monoclinic structure (space group P21), in which Fe2As2 layers…

The electronic structure, magnetic and structural properties of the superconductor ThFeAsN are discussed in relation to the Fe-pnictide and Fe-chalcogenide superconductors based on results of first principles calculations. The electronic…

Superconductivity · Physics 2016-06-30 D. J. Singh

We have synthesized two iron-pnictide/chalcogenide materials, CuFeTe2 and Fe2As, which share crystallographic features with known iron-based superconductors, and carried out high-pressure electrical resistivity measurements on these…

We report superconductivity in novel iron-based compounds Ca10(PtnAs8)(Fe2-xPtxAs2)5 with n = 3 and 4. Both compounds crystallize in triclinic structures (space group P-1), in which Fe2As2 layers alternate with PtnAs8 spacer layers.…

We have synthesized two iron fluo-arsenides $A$Ca$_2$Fe$_4$As$_4$F$_2$ with $A$ = Rb and Cs, analogous to the newly discovered superconductor KCa$_2$Fe$_4$As$_4$F$_2$. The quinary inorganic compounds crystallize in a body-centered…

Superconductivity · Physics 2017-04-05 Zhi-Cheng Wang , Chao-Yang He , Zhang-Tu Tang , Si-Qi Wu , Guang-Han Cao
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