The structural and electronic properties of a Si nanosheet (NS) grown onto a MoS2 substrate by means of molecular beam epitaxy are assessed. Epitaxially grown Si is shown to adapt to the trigonal prismatic surface lattice of MoS2 by forming two-dimensional nanodomains. The Si layer structure is distinguished from the underlying MoS2 surface structure. The local electronic properties of the Si nanosheet are dictated by the atomistic arrangement of the layer and unlike the MoS2 hosting substrate they are qualified by a gap-less density of states

Two-dimensional Si nanosheets with local hexagonal structure on a MoS 2 surface

Fanciulli, M;
2014-01-01

Abstract

The structural and electronic properties of a Si nanosheet (NS) grown onto a MoS2 substrate by means of molecular beam epitaxy are assessed. Epitaxially grown Si is shown to adapt to the trigonal prismatic surface lattice of MoS2 by forming two-dimensional nanodomains. The Si layer structure is distinguished from the underlying MoS2 surface structure. The local electronic properties of the Si nanosheet are dictated by the atomistic arrangement of the layer and unlike the MoS2 hosting substrate they are qualified by a gap-less density of states
2014
26
13
2096
2101
nanosheets; scanning tunnelling microscopy (STM); silicene; silicon; Materials Science (all); Mechanics of Materials; Mechanical Engineering
Chiappe, D; Scalise, E; Cinquanta, E; Grazianetti, C; Van Den Broek, B; Fanciulli, M; Houssa, M; Molle, A
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/2079770
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