The lack of large-area synthesis processes on substrates compatible with industry requirements has been one of the major hurdles facing the integration of 2D materials in mainstream technologies. This is particularly the case for the recently discovered monoelemental group V 2D materials which can only be produced by exfoliation or growth on exotic substrates. Herein, to overcome this limitation, we demonstrate a scalable method to synthesize antimonene on germanium substrates using solid-source molecular beam epitaxy. This emerging 2D material has been attracting a great deal of attention due to its high environmental stability and its outstanding optical and electronic properties. In situ low energy electron microscopy allowed the real ti...
Interest in two-dimensional (2D) electronic materials has exploded in the past decade, starting with...
This is the peer reviewed version of the following article: Ares, P., Palacios, J. J., Abellán, G., ...
Atomically thin materials offer unique optical, electronic and physical properties due to quantum co...
The lack of large-area synthesis processes on substrates compatible with industry requirements has b...
Synthetic two-dimensional (2D) mono-elemental crystals, namely X-enes, have recently emerged as a ne...
Antimonene (2D-Sb) is attracting considerable attention because of its environmental stability and e...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
Group-V elemental monolayers were recently predicted to exhibit exotic physical properties such as n...
The synthesis and structures of graphene on Ru(0001) and Pt(111), silicene on Ag(111) and Ir(111) an...
Graphene-like allotrope modifications of single elements, such as borophene (B), silicene (Si), germ...
Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence.W...
2D materials show outstanding properties that can bring many applications in different technological...
Today, two-dimensional materials are one of the key research topics for scientists around the world....
Antimonene has attracted much attention due to its excellent properties such as high carrier mobilit...
Using molecular beam epitaxy, a new structural phase of a single atom thick antimony layer has been ...
Interest in two-dimensional (2D) electronic materials has exploded in the past decade, starting with...
This is the peer reviewed version of the following article: Ares, P., Palacios, J. J., Abellán, G., ...
Atomically thin materials offer unique optical, electronic and physical properties due to quantum co...
The lack of large-area synthesis processes on substrates compatible with industry requirements has b...
Synthetic two-dimensional (2D) mono-elemental crystals, namely X-enes, have recently emerged as a ne...
Antimonene (2D-Sb) is attracting considerable attention because of its environmental stability and e...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
Group-V elemental monolayers were recently predicted to exhibit exotic physical properties such as n...
The synthesis and structures of graphene on Ru(0001) and Pt(111), silicene on Ag(111) and Ir(111) an...
Graphene-like allotrope modifications of single elements, such as borophene (B), silicene (Si), germ...
Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence.W...
2D materials show outstanding properties that can bring many applications in different technological...
Today, two-dimensional materials are one of the key research topics for scientists around the world....
Antimonene has attracted much attention due to its excellent properties such as high carrier mobilit...
Using molecular beam epitaxy, a new structural phase of a single atom thick antimony layer has been ...
Interest in two-dimensional (2D) electronic materials has exploded in the past decade, starting with...
This is the peer reviewed version of the following article: Ares, P., Palacios, J. J., Abellán, G., ...
Atomically thin materials offer unique optical, electronic and physical properties due to quantum co...