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Defect structure and superconducting properties of La1.8SrxCa1.2−xCu2O6−δ

H. Shaked, J. D. Jorgensen, B. A. Hunter, R. L. Hitterman, K. Kinoshita, F. Izumi, T. Kamiyama

DOI 10.1103/PhysRevB.48.12941 · Physical Review B

T1

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Abstract

We have studied the relationship between structural defects and superconductivity in La1.8SrxCa1.2−xCu2O6−δ (0≤x≤0.8). The samples were prepared by synthesis under different oxygen pressures, P(O2)=50, 250, and 400 atm. Six of the seven samples were found to be superconducting with 22≤Tc≤58 K. The structural properties were determined by neutron powder diffraction. The inter-CuO2-plane spacing, dCu−Cu, increases as Ca on the M(1) site between these planes is replaced by the larger Sr and La ions. The metal-site ordering is influenced by the oxygen pressure during synthesis. We have used the inter-CuO2-plane spacing, neutron-diffraction measurements of the scattering from the metal sites, and chemical constraints to determine the occupancies of La, Sr, and Ca at the M(1) site. For the same overall composition, higher oxygen pressure leads to a larger fraction of La on the M(1) site. Oxygen occupancy of the vacant O(3) site in the M(1) plane increases sharply when dCu−Cu exceeds 3.5 Å. The superconducting transition temperature Tc decreases systematically as the occupancy of O(3) increases for samples that would otherwise be expected to be superconducting.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
La1.82Ca1.18Cu2O6-δ

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52Pressure not reportedonset
La1.8Sr0.2Ca1.0Cu2O6-δ

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56Pressure not reportedonset
La1.8Sr0.2Ca1.0Cu2O6-δ

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58Pressure not reportedonset
La1.8Sr0.4Ca0.8Cu2O6-δ

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51Pressure not reportedonset
La1.8Sr0.6Ca0.6Cu2O6-δ

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

42Pressure not reportedonset
La1.8Sr0.8Ca0.4Cu2O6-δ

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22Pressure not reportedonset
La1.8Sr0.8Ca0.4Cu2O6-δ

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—Pressure not reportedunknown
La1.6Sr0.4CaCu2O6-z

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

60Pressure not reportedunknown

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