Synthesis, crystal structure, and properties of novel perovskite oxychalcogenides, Ca2CuFeO3Ch (Ch = S, Se)
暂无分享,去创建一个
[1] Y. Ikuhara,et al. A new iron pnictide oxide (Fe2As2)(Ca5(Mg, Ti)4Oy) and a new phase in the Fe–As–Ca–Mg–Ti–O system , 2010, 1006.3769.
[2] Shinya Sato,et al. Homologous series of iron pnictide oxide superconductors (Fe2As2)[Can+1(Sc,Ti)nOy] (n=3,4,5) with extremely thick blocking layers , 2010, 1006.2355.
[3] Jun-ichi Shimoyama,et al. Superconductivity Above 40 K Observed in a New Iron Arsenide Oxide (Fe2As2)(Ca4(Mg,Ti)3Oy) , 2010, 1006.2367.
[4] Peng Cheng,et al. Transition of stoichiometric Sr2VO3FeAs to a superconducting state at 37.2 K , 2009, 0904.1732.
[5] D. Johrendt,et al. The Layered Iron Arsenide Oxides Sr2CrO3FeAs and Ba2ScO3FeAs , 2009, 0904.0479.
[6] X. H. Chen,et al. Structure and physical properties of the new layered oxypnictides Sr4Sc2O6M2As2 (M=Fe and Co) , 2009, 0903.5484.
[7] K. Kishio,et al. New iron-based arsenide oxides (Fe2As2)(Sr4M2O6)(M = Sc, Cr) , 2009, 0903.5124.
[8] K. Kishio,et al. Superconductivity at 17 K in (Fe2P2)(Sr4Sc2O6): a new superconducting layered pnictide oxide with a thick perovskite oxide layer , 2009, 0903.3314.
[9] Xiyu Zhu,et al. (Sr_3Sc_2O_5)Fe_2As_2 as a possible parent compound for FeAs-based superconductors , 2008, 0811.2205.
[10] P. Adamson,et al. Structures, physical properties, and chemistry of layered oxychalcogenides and oxypnictides. , 2008, Inorganic chemistry.
[11] Hideo Hosono,et al. Iron-based layered superconductor La[O(1-x)F(x)]FeAs (x = 0.05-0.12) with T(c) = 26 K. , 2008, Journal of the American Chemical Society.
[12] D. Charkin,et al. A crystallographic re-investigation of Cu2Sb-related binary, ternary, and quaternary structures: how many structure types can exist upon the same topology of a unit cell? , 2007 .
[13] G. André,et al. Design and magnetic properties of new compounds containing iron 2D building blocks of the perovskite type , 2005 .
[14] M. Weller,et al. Neutron diffraction study of the antiferromagnetic oxyhalides Sr3Fe2O5Cl2, Sr3Fe2O5Br2 and Sr3FeCoO5Cl2 , 2004 .
[15] E. Parthé,et al. CaFeO 2Cl and Ca 2FeO 3Cl with higher space group symmetry, a reevaluation , 2003 .
[16] W. J. Zhu,et al. Synthesis and structure of layered manganese oxychalcogenides : Sr2CuMnO3S and Sr4Cu2Mn3O7.5Q2 (Q=S, Se) , 2000 .
[17] W. Jeitschko,et al. Quaternary rare earth transition metal arsenide oxides RTAsO (T=Fe, Ru, Co) with ZrCuSiAs type structure , 2000 .
[18] K. Kishio,et al. New Candidates for Superconductors; A Series of Layered Oxysulfides (Cu2S2)(Srn+1MnO3n−1) , 1999 .
[19] W. J. Zhu,et al. Crystal Structure of New Layered Oxysulfides: Sr3Cu2Fe2O5S2and Sr2CuMO3S (M=Cr, Fe, In) , 1997 .
[20] W. J. Zhu,et al. Sr2CuGaO3S, a Rare Example of Square Pyramidal Gallium , 1997 .
[21] M. Takano,et al. Synthesis, structure, and superconductivity of Ca2−xNaxCuO2Cl2 , 1996 .
[22] J. Woolley,et al. The crystal structure of copper iron selenide, CuFeSe2 , 1992 .
[23] K. Miyauchi,et al. A new chlorooxocuprate, Ca3Cu2O4Cl2, with an oxygen defect intergrowth , 1990 .
[24] W. Jeitschko,et al. ZrCuSiAs: A ``filled'' PbFCl type , 1974 .