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- W2512288889 abstract "Abstract This article reviews the current research on the 112‐phase of pnictides. The 112‐phase has gained augmented attention due to the recent discovery of high‐temperature superconductivity in with a maximum critical temperature upon Sb substitution. The structural, magnetic, and electronic properties of bear some similarities with other superconducting pnictide phases, however, the different valence states of the pnictogen and the presence of a metallic spacer layer are unique features of the 112‐system. Low‐temperature superconductivity which coexists with antiferromagnetic order was observed in transition metal (Ni, Pd) deficient 112‐compounds like , , , . Besides superconductivity, the presence of naturally occurring anisotropic Dirac Fermionic states were observed in the layered 112‐compounds SrMnBi 2 , CaMnBi 2 , LaAgBi 2 which are of significant interest for future nanoelectronics as an alternative to graphene. In these compounds, the linear energy dispersion resulted in a high magnetoresistance that stayed unsaturated even at the highest applied magnetic fields. Here, we describe various 112‐type materials systems combining experimental results and theoretical predictions to stimulate further research on this less well‐known member of the pnictide family." @default.
- W2512288889 created "2016-09-16" @default.
- W2512288889 creator A5066626434 @default.
- W2512288889 creator A5086447261 @default.
- W2512288889 date "2016-08-23" @default.
- W2512288889 modified "2023-10-16" @default.
- W2512288889 title "Superconductivity and Dirac fermions in 112-phase pnictides" @default.
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