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Superconductivity in non-stoichiometric and tin-substituted La2CuO4: preparation, characterization, Mössbauer and microwave-absorption studies
Authors:Sushil K Misra  Samih Isber  Georges Dns
Institution:

a Department of Physics, Concordia University, 1455 de Maisonneuve Boulevard West, Montréal, Que. H3G 1M8, Canada

b Department of Chemistry and Biochemistry, Laboratory of Solid State Chemistry and Mössbauer Spectroscopy, Laboratories for Inorganic Materials, Concordia University, 1455 de Maisonneuve Boulevard West, Montréal, Que. H3G 1M8, Canada

Abstract:Two samples of non-stoichiometric La2CuO4 were synthesized, one with La/Cu<2, and the other with 10% Sn substituting Cu. They were investigated by X-ray diffraction, Mössbauer spectroscopy, and microwave-absorption techniques. The microwave-absorption data indicated that they were both superconducting, with the transition temperatures Tc of 40.5 and 41.5 K, the one doped with Sn possessing the higher Tc. The Mössbauer spectra revealed that there exist two kinds of Sn(IV) atoms disordered with Cu. Their isomer shift, δ=−0.244(4) mm/s, is in agreement with Sn(IV) coordinated by oxygen. One site was characterized by a single Mössbauer line, being associated with a weakly distorted environment, wherein the Sn, coordinated more symmetrically, is surrounded by four Cu2+ ions. On the other hand, the other site, characterized by a Mössbauer doublet exhibited a quadrupole splitting Δ=1.07(2) mm/s, being associated with a highly distorted coordination, explained to be due to Sn occupying two adjacent cationic sites. To our knowledge, such a substitution for copper ions not resulting in a decrease of Tc has not been reported previously.
Keywords:La2CuO4 (non-stoichiometric)  Microwave absorption  Mössbauer spectroscopy  X-ray diffraction
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