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Add a Pinch of Tetrel: The Transformation of a Centrosymmetric Metal into a Nonsymmorphic and Chiral Semiconductor.


ABSTRACT: Centrosymmetric skutterudite RhP3 was converted to a nonsymmorphic and chiral compound RhSi0.3 P2.7 (space group P21 21 21 ) by means of partial replacement of Si for P. The structure, determined by a combination of X-ray crystallography and solid state 31 P NMR, exhibits branched polyanionic P/Si chains that are unique among metal phosphides. A driving force to stabilize the locally noncentrosymmetric cis-RhSi2 P4 and fac-RhSi3 P3 fragments is π-electron back-donation between the Rh t2g -type orbitals and the unoccupied antibonding Si/P orbitals, which is more effective for Si than for P. In situ studies and total energy calculations revealed the metastable nature of RhSi0.3 P2.7 . Electronic structure calculations predicted centrosymmetric cubic RhP3 to be metallic which was confirmed by transport properties measurements. In contrast, the electronic structure for chiral orthorhombic RhSi0.3 P2.7 contained a bandgap, and this compound was shown to be a narrow gap semiconductor.

SUBMITTER: Lee SJ 

PROVIDER: S-EPMC9302624 | biostudies-literature | 2022 Feb

REPOSITORIES: biostudies-literature

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Add a Pinch of Tetrel: The Transformation of a Centrosymmetric Metal into a Nonsymmorphic and Chiral Semiconductor.

Lee Shannon J SJ   Viswanathan Gayatri G   Carnahan Scott L SL   Harmer Colin P CP   Akopov Georgiy G   Rossini Aaron J AJ   Miller Gordon J GJ   Kovnir Kirill K  

Chemistry (Weinheim an der Bergstrasse, Germany) 20220112 9


Centrosymmetric skutterudite RhP<sub>3</sub> was converted to a nonsymmorphic and chiral compound RhSi<sub>0.3</sub> P<sub>2.7</sub> (space group P2<sub>1</sub> 2<sub>1</sub> 2<sub>1</sub> ) by means of partial replacement of Si for P. The structure, determined by a combination of X-ray crystallography and solid state <sup>31</sup> P NMR, exhibits branched polyanionic P/Si chains that are unique among metal phosphides. A driving force to stabilize the locally noncentrosymmetric cis-RhSi<sub>2</s  ...[more]

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