Синтез, строение и свойства сверхпроводников на основе арсенидов и селенидов железа с щелочными металлами (1105742), страница 29
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Superconductivity in the iron-based F-doped layeredquaternary compound Nd[O1-xFx]FeAs. Europhys. Lett., 82 (5), 2008, 57002.3. Wang, C., Li, L.J., Chi, S., Zhu, Z.W., Ren, Z., Li, Y.K., Wang, Y.T., Lin, X., Luo, Y.K.,Jiang, S.A., Xu, X.F., Cao, G.H., Xu, Z.A. Thorium-doping-inducedsuperconductivity up to 56 K in Gd1-xThxFeAsO. Europhys.
Lett., 83 (6), 2008,67006.4. Hsu, F.C., Luo, J.Y., Yeh, K.W., Chen, T.K., Huang, T.W., Wu, P.M., Lee, Y.C., Huang,Y.L., Chu, Y.Y., Yan, D.C., Wu, M.K. Superconductivity in the PbO-typestructure α-FeSe. PNAS, 105 (38), 2008, 14262.5. Chu, C.W., Chen, F., Gooch, M., Guloy, A.M., Lorenz, B., Lv, B., Sasmal, K., Tang,Z.J., Tapp, J.H., Xue, Y.Y.
The synthesis and characterization of LiFeAs andNaFeAs. Physica C: Superconductivity, 469 (9-12), 2009, 326.6. Deng, Z., Wang, X.C., Liu, Q.Q., Zhang, S.J., Lv, Y.X., Zhu, J.L., Yu, R.C., Jin, C.Q. Anew "111" type iron pnictide superconductor LiFeP. Europhys. Lett., 87 (3),2009, 37004.7. Just, G., Paufler, P. On the coordination of ThCr2Si2 (BaAl4)-type compounds within thefield of free parameters. J. Alloys Compd., 232 (1-2), 1996, 1.8.
Dagotto, E. Colloquium: the unexpected properties of alkali metal iron selenidesuperconductors. Rev. Mod. Phys., 85 (2), 2013, 849.9. Cheng, P., Shen, B., Mu, G., Zhu, X.Y., Han, F., Zeng, B., Wen, H.H. High Tcsuperconductivity induced by doping rare-earth elements into CaFeAsF.Europhys.
Lett., 85 (6), 2009, 67003.10. Tegel, M., Hummel, F., Lackner, S., Schellenberg, I., Pöttgen, R., Johrendt, D. Thelayered iron arsenide oxides Sr2CrO3FeAs and Ba2ScO3FeAs. Z. anorg. allg.Chem., 635 (13-14), 2009, 2242.11. Ivanovskii, A.L. New superconductors based on five-component transition metaloxypnictides. Russ. Chem. Rev., 79 (1), 2010, 1.12. Ogino, H., Machida, K., Yamamoto, A., Kishio, K., Shimoyama, J., Tohei, T., Ikuhara,Y. A new homologous series of iron pnictide oxide superconductors(Fe2As2)(Can+2(Al, Ti)nO y) (n = 2, 3, 4).
Supercond. Sci. Technol., 23 (11), 2010,115005.13. Ogino, H., Sato, S., Kishio, K., Shimoyama, J., Tohei, T., Ikuhara, Y. Homologous seriesof iron pnictide oxide superconductors (Fe2As2)[Can+1(Sc, Ti)nO y] (n = 3, 4, 5)with extremely thich blocking layers. Appl. Phys. Lett., 97 (7), 2010, 072506.13714. Lohnert, C., Sturzer, T., Tegel, M., Frankovsky, R., Friederichs, G., Johrendt, D.Superconductivity up to 35 K in the Iron Platinum Arsenides (CaFe1-xPtxAs)10Pt4yAs8 with Layered Structures.
Angew. Chem. Int. Ed., 50 (39), 2011, 9195.15. Katrych, S., Rogacki, K., Pisoni, A., Bosma, S., Weyeneth, S., Gaal, R., Zhigadlo, N.D.,Karpinski, J., Forro, L. Pr4Fe2As2Te1-xO4: A layered FeAs-based superconductor.Phys. Rev. B, 87 (18), 2013, 180508.16. Scheidt, E.W., Hathwar, V.R., Schmitz, D., Dunbar, A., Scherer, W., Mayr, F., Tsurkan,V., Deisenhofer, J., Loidl, A. Superconductivity at Tc=44 K in LixFe2Se2(NH3)y.EPJ B, 85 (8), 2012, 279.17. Burrard-Lucas, M., Free, D.G., Sedlmaier, S.J., Wright, J.D., Cassidy, S.J., Hara, Y.,Corkett, A.J., Lancaster, T., Baker, P.J., Blundell, S.J., Clarke, S.J. Enhancementof superconducting transition temperature of FeSe by intercalation of a molecularspacer layer. 2012, arXiv:1203.5046v2.18.
Ginzburg, V.L. Ferromagnetic superconductors. JETP, 31, 1956, 202.19. Kordyuk, A.A., Zabolotnyy, V.B., Evtushinsky, D.V., Yaresko, A.N., Büchner, B.,Borisenko, S.V. Electronic band structure of ferro-pnictide superconductors fromARPES experiment. J.
Supercond. Nov. Magn., 26 (9), 2013, 2837.20. Margadonna, S., Takabayashi, Y., McDonald, M.T., Kasperkiewicz, K., Mizuguchi, Y.,Takano, Y., Fitch, A.N., Suard, E., Prassides, K. Crystal structure of the newFeSe1-x superconductor. Chem. Commun., 43, 2008, 5607.21. Terzieff, P.
The paramagnetism of transition-metal substituted Fe7Se8. J. Phys. Chem.Solids, 43 (3), 1982, 305.22. Medvedev, S., McQueen, T.M., Troyan, I.A., Palasyuk, T., Eremets, M.I., Cava, R.J.,Naghavi, S., Casper, F., Ksenofontov, V., Wortmann, G., Felser, C. Electronicand magnetic phase diagram of β-Fe1.01Se with superconductivity at 36.7 K underpressure.
Nat. Mater., 8 (8), 2009, 630.23. Selte, K., Kjekshus, A., Andresen, A.F. Magnetic structure and properties of FeAs. ActaChem. Scand., 26 (8), 1972, 3101.24. Lee, C.H., Iyo, A., Eisaki, H., Kito, H., Fernandez-Diaz, M.T., Ito, T., Kihou, K.,Matsuhata, H., Braden, M., Yamada, K. Effect of structural parameters onsuperconductivity in fluorine-free LnFeAsO1-y (Ln = La, Nd). J. Phys. Soc. Jpn.,77 (8), 2008, 083704.25. Zhao, J., Huang, Q., de la Cruz, C., Li, S.L., Lynn, J.W., Chen, Y., Green, M.A., Chen,G.F., Li, G., Li, Z., Luo, J.L., Wang, N.L., Dai, P.C. Structural and magneticphase diagram of CeFeAsO1-xFx and its relation to high-temperaturesuperconductivity.
Nat. Mater., 7 (12), 2008, 953.26. Jeschke, H.O., Mazin, I.I., Valenti, R. Why MgFeGe is not a superconductor. Phys. Rev.B, 87 (24), 2013, 241105.27. Qian, B., Lee, J., Hu, J., Wang, G.C., Kumar, P., Fang, M.H., Liu, T.J., Fobes, D., Pham,H., Spinu, L., Wu, X.S., Green, M., Lee, S.H., Mao, Z.Q. Ferromagnetism in138CuFeSb: Evidence of competing magnetic interactionssuperconductors. Phys. Rev. B, 85 (14), 2012, 144427.iniron-based28. Liu, X.F., Matsuishi, S., Fujitsu, S., Hosono, H. MgFeGe as an isoelectronic andisostructural analog of the superconductor LiFeAs. Phys. Rev.
B, 85 (10), 2012,104403.29. Bodak, O.I., Gladyshevskii, E.I., Kripyakevich, P.I. Crystal structures of CeFeSi andrelated compounds. J. Struct. Chem., 11 (2), 1970, 305.30. Hlukhyy, V., Hoffman, A., Fässler, T.F. New phases in the 122 family: synthesis,structure and bonding. Z. anorg. allg. Chem., 638 (10), 2012, 1619.31. Hoffmann, R., Zheng, C. Making and breaking bonds in the solid state: the thoriumchromium silicide (ThCr2Si2) structure.
J. Phys. Chem., 89 (20), 1985, 4175.32. Huan, G., Greenblatt, M., Croft, M. New ternary transition metal chalcogenides AM2X2(A = K, Rb, Cs; M = Co; A = K, M = Ni; X = S, Se): magnetically ordered metalswith the ThCr2Si2-type structure. Eur. J. Solid State Inorg. Chem., 26 (2), 1989,193.33. Mou, D.X., Zhao, L., Zhou, X.J. Structural, magnetic and electronic properties of theiron-chalcogenide A xFe2-ySe2 (A = K, Cs, Rb, and Tl, etc.) superconductors.Front. Phys., 6 (4), 2011, 410.34. Bao, W., Huang, Q.Z., Chen, G.F., Green, M.A., Wang, D.M., He, J.B., Qiu, Y.M. Anovel large moment antiferromagnetic order in K0.8Fe1.6Se2 superconductor. Chin.Phys.
Lett., 28 (8), 2011, 086104.35. Wang, M., Wang, M.Y., Li, G.N., Huang, Q., Li, C.H., Tan, G.T., Zhang, C.L., Cao,H.B., Tian, W., Zhao, Y., Chen, Y.C., Lu, X.Y., Sheng, B., Luo, H.Q., Li, S.L.,Fang, M.H., Zarestky, J.L., Ratcliff, W., Lumsden, M.D., Lynn, J.W., Dai, P.C.Antiferromagnetic order and superlattice structure in nonsuperconducting andsuperconducting RbyFe1.6+xSe2. Phys. Rev. B, 84 (9), 2011, 094504.36. Li, W., Ding, H., Deng, P., Chang, K., Song, C.L., He, K., Wang, L.L., Ma, X.C., Hu,J.P., Chen, X., Xue, Q.K. Phase separation and magnetic order in K-doped ironselenide superconductor.
Nat. Phys., 8 (2), 2012, 126.37. Ye, F., Chi, S., Bao, W., Wang, X.F., Ying, J.J., Chen, X.H., Wang, H.D., Dong, C.H.,Fang, M.H. Common crystalline and magnetic structure of superconductingA2Fe4Se5 (A = K, Rb, Cs, Tl) single crystals measured using neutron diffraction.Phys. Rev. Lett., 107 (13), 2011, 137003.38. Pomjakushin, V.Y., Sheptyakov, D.V., Pomjakushina, E.V., Krzton-Maziopa, A.,Conder, K., Chernyshov, D., Svitlyk, V., Shermadini, Z. Iron-vacancysuperstructure and possible room-temperature antiferromagnetic order insuperconducting CsyFe2-xSe2. Phys. Rev. B, 83 (14), 2011, 144410.39. Pomjakushin, V.Y., Pomjakushina, E.V., Krzton-Maziopa, A., Conder, K., Shermadini,Z. Room temperature antiferromagnetic order in superconducting XyFe2-xSe2 (X =Rb, K): a neutron powder diffraction study.
J. Phys. : Condens. Matter, 23 (15),2011, 156003.13940. Wang, Z., Song, Y.J., Shi, H.L., Wang, Z.W., Chen, Z., Tian, H.F., Chen, G.F., Guo,J.G., Yang, H.X., Li, J.Q. Microstructure and ordering of iron vacancies in thesuperconductor system KyFexSe2 as seen via transmission electron microscopy.Phys. Rev. B, 83 (14), 2011, 140505.41. Li, J.Q., Song, Y.J., Yang, H.X., Wang, Z., Shi, H.L., Chen, G.F., Wang, Z.W., Chen, Z.,Tian, H.F. Collapse of the Fe-vacancy order and succesive phase transitions insuperconducting KxFe2-ySe2 (0.7 ≤ x ≤ 0.8, 0.2 ≤ y ≤ 0.3). 2013,arXiv:1104.5340v1.42. Song, Y.J., Wang, Z., Wang, Z.W., Shi, H.L., Chen, Z., Tian, H.F., Chen, G.F., Yang,H.X., Li, J.Q. Phase transition, superstructure and physical properties ofK2Fe4Se5.
Europhys. Lett., 95 (3), 2011, 37007.43. Kazakov, S.M., Abakumov, A.M., Gonzalez, S., Perez-Mato, J.M., Ovchinnikov, A.V.,Roslova, M.V., Boltalin, A.I., Morozov, I.V., Antipov, E.V., Van Tendeloo, G.Uniform patterns of Fe-vacancy ordering in the Kx (Fe,Co)2-ySe2 superconductors.Chem. Mater., 23 (19), 2011, 4311.44. Cai, P., Ye, C., Ruan, W., Zhou, X.D., Wang, A.F., Zhang, M., Chen, X.H., Wang, Y.Y.Imaging the coexistence of a superconducting phase and a charge-densitymodulation in the K0.73Fe1.67Se2 superconductor using a scanning tunnelingmicroscope.