A new two dimensional (2D) material—germanane—has been synthesised recently with promising electrical and optical properties. In this paper we report the first realisation of germanane field-effect transistors fabricated from multilayer single crystal flakes. Our germanane devices show transport in both electron and hole doped regimes with on/off current ratio of up to 10e5(10e4) and carrier mobilities of 150 cm2 (Vs)−1(70 cm2 (Vs)−1) at 77 K (room temperature). A significant enhancement of the device conductivity under illumination with 650 nm red laser is observed. Our results reveal ambipolar transport properties of germanane with great potential for (opto)electronics applications
Two-dimensional (2D) semiconductors such as transition metal dichalcogenides (TMDs) and black phosph...
Comprehensive density functional theory computations with van der Waals (vdW) correction demonstrate...
Graphene’s success has shown not only that it is possible to create stable, single-atom-thick sheets...
A new two dimensional (2D) material—germanane—has been synthesised recently with promising electrica...
International audienceGermanane is a two-dimensional, strongly confined form of germanium. It presen...
Two-dimensional (2D) materials are a class of materials that consist of a single layer of atoms arra...
We investigate the electronic properties of Germanane and analyze its importance as 2-D channel mate...
International audienceGermanane is a two-dimensional material consisting of stacks of atomically thi...
The world is silicon based technology is about to come to a close as it rapidly approaches the quant...
In the past decades, electronic devices are getting smaller and more powerful, following the Moore’s...
Similar to carbon, germanium exists in various structures such as three-dimensional crystalline germ...
We report the fabrication and electrical characterization of germanium arsenide (GeAs) field-effect ...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
Two-dimensional (2D) semiconductors such as transition metal dichalcogenides (TMDs) and black phosph...
Comprehensive density functional theory computations with van der Waals (vdW) correction demonstrate...
Graphene’s success has shown not only that it is possible to create stable, single-atom-thick sheets...
A new two dimensional (2D) material—germanane—has been synthesised recently with promising electrica...
International audienceGermanane is a two-dimensional, strongly confined form of germanium. It presen...
Two-dimensional (2D) materials are a class of materials that consist of a single layer of atoms arra...
We investigate the electronic properties of Germanane and analyze its importance as 2-D channel mate...
International audienceGermanane is a two-dimensional material consisting of stacks of atomically thi...
The world is silicon based technology is about to come to a close as it rapidly approaches the quant...
In the past decades, electronic devices are getting smaller and more powerful, following the Moore’s...
Similar to carbon, germanium exists in various structures such as three-dimensional crystalline germ...
We report the fabrication and electrical characterization of germanium arsenide (GeAs) field-effect ...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
Two-dimensional (2D) semiconductors such as transition metal dichalcogenides (TMDs) and black phosph...
Comprehensive density functional theory computations with van der Waals (vdW) correction demonstrate...
Graphene’s success has shown not only that it is possible to create stable, single-atom-thick sheets...