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The optimal one dimensional periodic table: a modified Pettifor chemical scale from data mining

H. Glawe, A. Sanna, E. Gross, M. Marques

New Journal of Physics, 18, 093011, (2016)

DOI: 10.1088/1367-2630/18/9/093011

Download: BibTEX

Starting from the experimental data contained in the inorganic crystal structure database, we use a statistical analysis to determine the likelihood that a chemical element A can be replaced by another B in a given structure. This information can be used to construct a matrix where each entry $(A,B)$ is a measure of this likelihood. By ordering the rows and columns of this matrix in order to reduce its bandwidth, we construct a one-dimension ordering of the chemical elements, analogous to the famous Pettifor scale. The new scale shows large similarities with the one of Pettifor, but also striking differences, especially in what comes to the ordering of the non-metals.

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{"type":"article", "name":"h.glawe20169", "author":"H. Glawe and A. Sanna and E. Gross and M. Marques", "title":"The optimal one dimensional periodic table: a modified Pettifor chemical scale from data mining", "journal":"New Journal of Physics", "volume":"18", "OPTnumber":"9", "OPTmonth":"9", "year":"2016", "OPTpages":"093011", "OPTnote":"", "OPTkey":"", "DOI":"10.1088/1367-2630/18/9/093011"}
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