Two ultra-stable novel allotropes of tellurium few-layers
At least four two- or quasi-one-dimensional allotropes and a mixture of them were theoretically predicted or experimentally observed for low-dimensional Te, namely the α , β , γ , δ , and chiral- α + δ phases. Among them the γ and α phases were found to be the most stable phases for monolayer and th...
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Veröffentlicht in: | Chinese physics B 2020-09, Vol.29 (9), p.97103 |
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Hauptverfasser: | , , , , , , , , , |
Format: | Artikel |
Sprache: | eng |
Online-Zugang: | Volltext |
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Zusammenfassung: | At least four two- or quasi-one-dimensional allotropes and a mixture of them were theoretically predicted or experimentally observed for low-dimensional Te, namely the
α
,
β
,
γ
,
δ
, and chiral-
α
+
δ
phases. Among them the
γ
and
α
phases were found to be the most stable phases for monolayer and thicker layers, respectively. Here, we found two novel low-dimensional phases, namely the
ε
and
ζ
phases. The
ζ
phase is over 29 meV/Te more stable than the most stable monolayer
γ
phase, and the
ε
phase shows comparable stability with the most stable monolayer
γ
phase. The energetic difference between the
ζ
and
α
phases reduces with respect to the increased layer thickness and vanishes at the four-layer (12-sublayer) thickness, while this thickness increases under change doping. Both
ε
and
ζ
phases are metallic chains and layers, respectively. The
ζ
phase, with very strong interlayer coupling, shows quantum well states in its layer-dependent bandstructures. These results provide significantly insight into the understanding of polytypism in Te few-layers and may boost tremendous studies on properties of various few-layer phases. |
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ISSN: | 1674-1056 |
DOI: | 10.1088/1674-1056/aba606 |