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Possible high-temperature superconductors predicted from electronic structure and data-filtering algorithms

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arxiv 1109.6935 v1 pith:JUI475EG submitted 2011-09-30 cond-mat.mtrl-sci

Possible high-temperature superconductors predicted from electronic structure and data-filtering algorithms

classification cond-mat.mtrl-sci
keywords electronicstructurematerialscompoundscrystaldata-filteringhighpossible
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We report here the completion of the electronic structure of the majority of the known stoichiometric inorganic compounds, as listed in the International Crystal Structure Data-base (ICSD). We make a detailed comparison of the electronic structure, crystal geometry and chemical bonding of cuprate high temperature superconductors, with the calculated over sixty thousand electronic structures. Based on compelling similarities of the electronic structures in the normal state and a data-filtering technique, we propose that high temperature superconductivity is possible for electron- or hole-doping in a much larger group of materials than previously considered. The indentified materials are composed of over one hundred layered compounds, most which hitherto are untested with respect to their super conducting properties. Of particular interest are the following materials; Ca$_2$(CuBr$_2$O$_2$), K$_2$CoF$_4$, Sr$_2$(MoO$_4$) and Sr$_4$V$_3$O$_{10}$, which are discussed in detail.

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