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    "dataset_version": "240322",
    "dataset_url": "https://doi.org/10.48505/nims.4487",
    "source": {
      "filename": "240322_MDR_Organic.txt",
      "bytes": 263372,
      "sha256": "d116848a90d01e48356ed6cf0bb69035fa863a3a559deac1ef188025bdb3b423",
      "header_sha256": "c1e031a258d9c822eeba109fb40a76198219af1735c35c586f7332dbaf936fa7",
      "url": "https://mdr.nims.go.jp/filesets/1a18e447-8ec2-4316-be12-b4acdc885fb8/download",
      "guide_url": "https://mdr.nims.go.jp/filesets/dd00e931-e7b7-4bc5-bde2-ba0ff1e9adaf/download",
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    "attribution": "MDR SuperCon Datasheet Ver.240322, National Institute for Materials Science (NIMS), DOI 10.48505/nims.4487. SCLib preserves all original Organic cells and adds row provenance and a reading interface.",
    "license": "CC BY 4.0",
    "license_url": "https://creativecommons.org/licenses/by/4.0/",
    "columns": [
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      "name",
      "fullname",
      "shape",
      "str",
      "lata",
      "latb",
      "latc",
      "alpha",
      "beta",
      "lgamma",
      "tc",
      "tcmax",
      "pmax",
      "pcrit",
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      "isotope",
      "isoel",
      "dtcdp",
      "tcn",
      "hc1zero",
      "hc2zero",
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      "full material name",
      "shape",
      "structure",
      "lattice constant a",
      "lattice constant b",
      "lattice constant c",
      "lattice alpha",
      "lattice beta",
      "lattice gamma",
      "Tc at pcrit or Tc at atmospheric pressure",
      "maximum tc under pressure",
      "applied pressure for tcmax",
      "Critical pressure/GPa at which Tc can be observed",
      "tc measurement method",
      "alpha in Tc=A*M^(-alpha), isotope effect",
      "isotope element",
      "slope at P=0 in Tc vs P plot ",
      "lowest temperature for measurement (not superconducting)",
      "Hc1 at 0 K for poly crystal",
      "Hc2 at 0 K for poly crystal",
      "-slope in Hc2 vs T at Tc for poly crystal",
      "coherence length at 0 K for poly crystal",
      "penetration depth at 0 K for poly crystal",
      "Ginzburg-Landau order parameter",
      "energy gap at 0 K, delta(0)",
      "method of measuring energy gap",
      "coefficient of electronic specific heat",
      "Debye temperature",
      "Curie temperature",
      "Neel temperature",
      "figure1 file name",
      "figure2 filename",
      "figure description",
      "table file name",
      "table description",
      "comment",
      "figure1 data file name",
      "f2 data file name",
      "title",
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    "coverage": {
      "num": 568,
      "refno": 568,
      "name": 563,
      "fullname": 568,
      "shape": 234,
      "str": 566,
      "lata": 109,
      "latb": 107,
      "latc": 109,
      "alpha": 42,
      "beta": 84,
      "lgamma": 42,
      "tc": 517,
      "tcmax": 83,
      "pmax": 74,
      "pcrit": 484,
      "tcmeth": 39,
      "isotope": 28,
      "isoel": 52,
      "dtcdp": 53,
      "tcn": 23,
      "hc1zero": 21,
      "hc2zero": 70,
      "dhc2dt": 37,
      "cohere": 73,
      "penet": 41,
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      "fig1": 162,
      "fig2": 22,
      "figname": 5,
      "tbl": 1,
      "tblname": 0,
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      "year": 568,
      "keyword": 21,
      "institute": 328,
      "journal": 568,
      "author": 567,
      "sample": 26,
      "comments": 1
    },
    "interpretation": {
      "units": "Only pcrit explicitly names GPa in the table header. Other numeric columns have no unit columns; no numeric normalization is performed.",
      "tc": "The actual source header says Tc at pcrit or atmospheric pressure; the guide abbreviates it as Tc at pcrit. Missing pcrit does not establish ambient pressure.",
      "tcmax": "Maximum Tc under pressure; pmax is its associated applied pressure, unlike the oxide/metallic table pmax definition.",
      "tcn": "Lowest measurement temperature for a non-superconducting report, not a Tc value.",
      "names": "Common name can contain only the counterion; full name, structure label, isotope and comments remain separate. No molecular expansion, phase or sample matching is inferred."
    },
    "scope": {
      "source_publication_status": "not_checked",
      "scientific_acceptance": false,
      "catalogue_association": "unestablished",
      "ml_training_approved": false,
      "canonical_properties_modified": false
    }
  },
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    {
      "id": "16",
      "line_start": 18,
      "line_end": 18,
      "sha256": "2a9d23ab48ec3eb40e2ddd24771d105ef4b8fba04e4ac9f2be968dc6bfeed6a0",
      "values": [
        "16",
        "PHC3310292",
        "Cu(NCS)2",
        "kappa-(BEDT-TTF)2Cu(NCS)2",
        "",
        "BEDT-TTF",
        "",
        "",
        "",
        "",
        "",
        "",
        "9.5",
        "",
        "",
        "0",
        "",
        "",
        "",
        "",
        "",
        "",
        "11.3",
        "1.6",
        "54",
        "0.48",
        "71",
        "",
        "",
        "",
        "",
        "",
        "",
        "",
        "",
        "",
        "",
        "",
        "Hc2 calculated based on magnetization curves.",
        "",
        "",
        "Magnetization study of organic superconductor kappa-(BEDT-TTF)2Cu(NCS)2",
        "2000",
        "",
        "National Creative Research Initiative Center for Superconductivity, Department of Physics, Pohang University of Science and Technology, Pohang, Kyungbuk 790-784, South Korea",
        "Physica C,331(2000)292-296",
        "H-J.Kim,Hyeong-Jin Kim,Jae-Hyuk Choi,Jin-Tae Kim,Mun-Seog Kim,Sung-Ik Lee",
        "",
        ""
      ]
    }
  ]
}
