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Indiene 2D monolayer : a new nanoelectronic material (CROSBI ID 224071)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Singh, Deobrat ; Gupta, Sanjeev K. ; Lukačević, Igor ; Sonvane, Yogesh Indiene 2D monolayer : a new nanoelectronic material // RSC Advances, 6 (2016), 10; 8006-8014. doi: 10.1039/C5RA25773E

Podaci o odgovornosti

Singh, Deobrat ; Gupta, Sanjeev K. ; Lukačević, Igor ; Sonvane, Yogesh

engleski

Indiene 2D monolayer : a new nanoelectronic material

One atom thick monolayer nanostructures consisting of group III, IV and V elements are drawing ever more attention for their extraordinary electronic properties. Through first principles calculations, we systematically investigate structural and electronic properties of the corresponding indium monolayers in three different allotropic forms: planar, puckered and buckled. Our study shows that the planar and buckled allotropes are stable and show metallic and semiconducting behavior, respectively. Their stability and electronic properties cannot be easily correlated to those of similar elemental monolayer structures. The van Hove singularity is observed in the electronic density of states which could lead to an increase in the electronic conductivity, opening paths to new electronic applications. Strain engineering is applied in order to determine the changes in the electronic behavior and band gap properties. The planar allotrope remains metallic under both compressive and tensile strain, while the buckled allotrope changes from an indirect semiconductor to a metal. Our study demonstrates that the indiene nanostructures possess diverse electronic properties, tunable by strain engineering, which have potential applications in nanoelectronics and for nanodevices.

jednoslojni materijali ; nanomaterijali ; elektronska svojstva ; teorija funkcionala gustoće

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Podaci o izdanju

6 (10)

2016.

8006-8014

objavljeno

2046-2069

10.1039/C5RA25773E

Povezanost rada

Fizika

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