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Interplay of Atomic Interactions in the Intermetallic Semiconductor Be5Pt
Authors:Alfred Amon  Eteri Svanidze  Alim Ormeci  Marcus Knig  Deepa Kasinathan  Daisuke Takegami  Yurii Prots  Yen‐Fa Liao  Ku‐Ding Tsuei  Liu Hao Tjeng  Andreas Leithe‐Jasper  Yuri Grin
Institution:Alfred Amon,Eteri Svanidze,Alim Ormeci,Marcus König,Deepa Kasinathan,Daisuke Takegami,Yurii Prots,Yen‐Fa Liao,Ku‐Ding Tsuei,Liu Hao Tjeng,Andreas Leithe‐Jasper,Yuri Grin
Abstract:Semiconducting substances form one of the most important families of functional materials. However, semiconductors containing only metals are very rare. The chemical mechanisms behind their ground‐state properties are only partially understood. Our investigations have rather unexpectedly revealed the semiconducting behaviour (band gap of 190 meV) for the intermetallic compound Be5Pt formed at a very low valence‐electron count. Quantum‐chemical analysis shows strong charge transfer from Be to Pt and reveals a three‐dimensional entity of vertex‐condensed empty Be4 tetrahedrons with multi‐atomic cluster bonds interpenetrated by the framework of Pt‐filled vertex‐condensed Be4 tetrahedrons with two‐atomic polar Be?Pt bonds. The combination of strong Coulomb interactions with relativistic effects results in a band gap.
Keywords:Beryllium  Chemische Bindung  Halbleiter  Intermetallische Verbindungen  Platin
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