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    {
        "sample": {
            "material": {
                "chemicalFormula": "AgBr"
            }, 
            "reference": [
                {
                    "citation": "T. E. Pochapsky, J. Chem. Phys., 1953, 21, 1539. 12"
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
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                {
                    "dataType": "Experimental", 
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                        "name": "Thermal conductivity"
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                }, 
                {
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                {
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        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "Bi2Te3"
            }, 
            "reference": [
                {
                    "citation": "Y. Zhao, J. S. Dyck and C. Burda, J. Mater. Chem., 2011, 21, 17049\u201317058."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
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                {
                    "dataType": "Experimental", 
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                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "0.58", 
                        "name": "Thermal conductivity"
                    }
                }, 
                {
                    "dataType": "Computational", 
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                        "scalar": "0.21", 
                        "name": "Thermal conductivity"
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                }, 
                {
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                        "scalar": "0.23", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
                }
            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "NaCo2O4"
            }, 
            "reference": [
                {
                    "citation": "T. M. Tritt, Thermal conductivity: theory, properties, and applications, Springer Science & Business Media, 2004."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
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                {
                    "dataType": "Experimental", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "0.71", 
                        "name": "Thermal conductivity"
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                }, 
                {
                    "dataType": "Computational", 
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                        "scalar": "1", 
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                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.12", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
                }
            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "KBr"
            }, 
            "reference": [
                {
                    "citation": "D. Cahill, S. Watson and R. Pohl, Phys. Rev. B, 1992, 46."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
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                {
                    "dataType": "Experimental", 
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                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "0.67", 
                        "name": "Thermal conductivity"
                    }
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "0.29", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Clarke"
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "0.33", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
                }
            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "BaTiO3"
            }, 
            "reference": [
                {
                    "citation": "H. Muta, K. Kurosaki and S. Yamanaka, J. Alloys Compd., 2004, 368, 22\u201324."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
            "measurement": [
                {
                    "dataType": "Experimental", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "2.38", 
                        "name": "Thermal conductivity"
                    }
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.44", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Clarke"
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.56", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
                }
            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "Mg2Si"
            }, 
            "reference": [
                {
                    "citation": "K. Mars, H. Ihou-Mouko, G. Pont, J. Tobola and H. Scherrer, J. Electron. Mater., 2009, 38, 1360\u20131364."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
            "measurement": [
                {
                    "dataType": "Experimental", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "2.64", 
                        "name": "Thermal conductivity"
                    }
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.13", 
                        "name": "Thermal conductivity"
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                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.22", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
                }
            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "TiO2"
            }, 
            "reference": [
                {
                    "citation": "S.-M. Lee, D. G. Cahill and T. H. Allen, Phys. Rev. B, 1995, 52, 253."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
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                {
                    "dataType": "Experimental", 
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                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "3.3", 
                        "name": "Thermal conductivity"
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                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.52", 
                        "name": "Thermal conductivity"
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                    "method": "Clarke"
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.73", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
                }
            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "SiO2"
            }, 
            "reference": [
                {
                    "citation": "T. M. Tritt, Thermal conductivity: theory, properties, and applications, Springer Science & Business Media, 2004."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
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                {
                    "dataType": "Experimental", 
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                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.24", 
                        "name": "Thermal conductivity"
                    }
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.09", 
                        "name": "Thermal conductivity"
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                }, 
                {
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                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.19", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
                }
            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "SrTiO3"
            }, 
            "reference": [
                {
                    "citation": "D. W. Oh, J. Ravichandran, C. W. Liang, W. Siemons, B. Jalan, C. M. Brooks, M. Huijben, D. G. Schlom, S. Stemmer, L. W. Martin, A. Majumdar, R. Ramesh and D. G. Cahill, Appl. Phys. Lett., 2011, 98, 221904."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
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                {
                    "dataType": "Experimental", 
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                        "name": "Thermal conductivity"
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                }, 
                {
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                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.67", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Clarke"
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.81", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
                }
            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "Y2O3"
            }, 
            "reference": [
                {
                    "citation": "W. J. Tropf, M. E. Thomas and T. J. Harris, Handb. Opt., 1995, 2, 33\u201361."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
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                {
                    "dataType": "Experimental", 
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                        "name": "Thermal conductivity"
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                {
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                        "scalar": "1.11", 
                        "name": "Thermal conductivity"
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                }, 
                {
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                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.23", 
                        "name": "Thermal conductivity"
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                    "method": "Cahill"
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            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "MgAl2O4"
            }, 
            "reference": [
                {
                    "citation": "S. Shind\u00e9 and J. Goela, High thermal conductivity materials, 2006."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
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                {
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                {
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                        "name": "Thermal conductivity"
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                }, 
                {
                    "dataType": "Computational", 
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                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "2.41", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
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            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "GaAs"
            }, 
            "reference": [
                {
                    "citation": "T. Borca-Tasciuc, D. W. Song, J. R. Meyer, I. Vurgaftman, M. J. Yang, B. Z. Nosho, L. J. Whitman, H. Lee, R. U. Martinelli and G. W. Turner, Thermal Conductivity of AlAs (0.07) Sb (0.93) and Al (0.9) Ga (0.1) As (0.07) Sb (0.93) Alloys and (AlAs) 1/(AlSB) 11 Digital Alloy Superlattices, DTIC Document, 2002."
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                {
                    "doi": "10.1039/C5TC04339E"
                }
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                {
                    "dataType": "Experimental", 
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                        "name": "Thermal conductivity"
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                }, 
                {
                    "dataType": "Computational", 
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                        "units": "W m$^{-1}$ K$^{-1}$", 
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                {
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                        "name": "Thermal conductivity"
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                    "method": "Cahill"
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            ]
        }
    }, 
    {
        "sample": {
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                {
                    "citation": "S. Shind\u00e9 and J. Goela, High thermal conductivity materials, 2006."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
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                {
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                }, 
                {
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                {
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    {
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                {
                    "citation": "S. Shind\u00e9 and J. Goela, High thermal conductivity materials, 2006."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
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                {
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                {
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                {
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    {
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                {
                    "citation": "D. Cahill, S. Watson and R. Pohl, Phys. Rev. B, 1992, 46."
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                {
                    "doi": "10.1039/C5TC04339E"
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                {
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                {
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                        "scalar": "0.72", 
                        "name": "Thermal conductivity"
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            ]
        }
    }, 
    {
        "sample": {
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                "chemicalFormula": "Si3N4"
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                {
                    "citation": "S. Shind\u00e9 and J. Goela, High thermal conductivity materials, 2006."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
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                {
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                }, 
                {
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                {
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                    "method": "Cahill"
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            ]
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    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "Si"
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                {
                    "citation": "S. Shind\u00e9 and J. Goela, High thermal conductivity materials, 2006."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
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                {
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                {
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    }, 
    {
        "sample": {
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                "chemicalFormula": "GaN"
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                {
                    "citation": "S. Shind\u00e9 and J. Goela, High thermal conductivity materials, 2006."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
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                {
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                {
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                        "name": "Thermal conductivity"
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                    "method": "Cahill"
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            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "BeO"
            }, 
            "reference": [
                {
                    "citation": "C. G. Levi, Curr. Opin. Solid State Mater. Sci., 2004, 8, 77\u201391."
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                {
                    "doi": "10.1039/C5TC04339E"
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                {
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                {
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                {
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        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "NiO"
            }, 
            "reference": [
                {
                    "citation": "W. Shin and N. Murayama, Jpn. J. Appl. Phys., 1999, 38, L1336."
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                {
                    "doi": "10.1039/C5TC04339E"
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                {
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                {
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    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "AgCrSe2"
            }, 
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                {
                    "citation": "F. Gascoin and A. Maignan, Chem. Mater., 2011, 23, 2510\u20132513."
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                {
                    "doi": "10.1039/C5TC04339E"
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                {
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                {
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    }, 
    {
        "sample": {
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                {
                    "citation": "S. Shind\u00e9 and J. Goela, High thermal conductivity materials, 2006."
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                {
                    "doi": "10.1039/C5TC04339E"
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                {
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        "sample": {
            "material": {
                "chemicalFormula": "Mo6Te8"
            }, 
            "reference": [
                {
                    "citation": "K. Kurosaki, A. Kosuga and S. Yamanaka, 2003, 351, 208\u2013211."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
            "measurement": [
                {
                    "dataType": "Experimental", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.1", 
                        "name": "Thermal conductivity"
                    }
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "0.3", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Clarke"
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "0.34", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
                }
            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "ZrO2"
            }, 
            "reference": [
                {
                    "citation": "C. G. Levi, Curr. Opin. Solid State Mater. Sci., 2004, 8, 77\u201391."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
            "measurement": [
                {
                    "dataType": "Experimental", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "2.5", 
                        "name": "Thermal conductivity"
                    }
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.42", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Clarke"
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "1.57", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
                }
            ]
        }
    }, 
    {
        "sample": {
            "material": {
                "chemicalFormula": "Co4Sb"
            }, 
            "reference": [
                {
                    "citation": "K. Biswas, M. S. Good, K. C. Roberts, M. A. Subramanian and T. J. Hendricks, J. Mater. Res., 2011, 26, 1827\u20131835."
                }, 
                {
                    "doi": "10.1039/C5TC04339E"
                }
            ], 
            "measurement": [
                {
                    "dataType": "Experimental", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "0.4", 
                        "name": "Thermal conductivity"
                    }
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "0.63", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Clarke"
                }, 
                {
                    "dataType": "Computational", 
                    "property": {
                        "units": "W m$^{-1}$ K$^{-1}$", 
                        "scalar": "0.68", 
                        "name": "Thermal conductivity"
                    }, 
                    "method": "Cahill"
                }
            ]
        }
    }
]