We present the controlled synthesis of high-quality two-dimensional (2D) GaSe crystals on flexible transparent mica substrates via a facile van der Waals epitaxy method. Single- and few-layer GaSe nanoplates with the lateral size of up to tens of micrometers were produced. The orientation and nucleation sites of GaSe nanoplates were well-controlled. The 20 GaSe crystal-based photodetectors were demonstrated on both mechanically rigid SiO2/Si and flexible mica substrates. Efficient photoresponse was observed in 2D GaSe crystal devices on transparent flexible mica substrates, regardless of repeated bending with different radii. The controlled growth of 20 GaSe crystals with efficient photoresponsivity opens up opportunities for both fundament...
The key challenge of direct integration of two-dimensional (2D) chalcogenide crystals into functiona...
The two dimensional atomically layered materials are drawing intense attention in recent years, beca...
Two-dimensional (2D) transition-metal monochalcogenides have been recently predicted to be potential...
Two-dimensional (2D) semiconductor nanomaterials hold great promises for future electronics and opti...
Vertically stacking two-dimensional (2D) materials can enable the design of novel electronic and opt...
Vertically stacking two-dimensional (2D) materials can enable the design of novel electronic and opt...
Vertically stacking two-dimensional (2D) materials can enable the design of novel electronic and opt...
Vertically stacking two-dimensional (2D) materials can enable the design of novel electronic and opt...
Van der Waals epitaxy (vdWE) is of great interest due to its extensive applications in the synthesis...
ABSTRACT: We report the direct growth of large, atomically thin GaSe single crystals on insulating s...
A high-quality GaSe single crystal was grown by the Bridgman method. The X-ray rocking curve for the...
The growth of high-quality two-dimensional (2D) layered chalcogenide crystals is highly important fo...
Two-dimensional semiconductors (2SEM) can transform many sectors, from Information and Communication...
Patterning of high-quality two-dimensional chalcogenide crystals with unique planar structures and v...
Despite great progress in synthesis and application of graphene-like materials, it remains a conside...
The key challenge of direct integration of two-dimensional (2D) chalcogenide crystals into functiona...
The two dimensional atomically layered materials are drawing intense attention in recent years, beca...
Two-dimensional (2D) transition-metal monochalcogenides have been recently predicted to be potential...
Two-dimensional (2D) semiconductor nanomaterials hold great promises for future electronics and opti...
Vertically stacking two-dimensional (2D) materials can enable the design of novel electronic and opt...
Vertically stacking two-dimensional (2D) materials can enable the design of novel electronic and opt...
Vertically stacking two-dimensional (2D) materials can enable the design of novel electronic and opt...
Vertically stacking two-dimensional (2D) materials can enable the design of novel electronic and opt...
Van der Waals epitaxy (vdWE) is of great interest due to its extensive applications in the synthesis...
ABSTRACT: We report the direct growth of large, atomically thin GaSe single crystals on insulating s...
A high-quality GaSe single crystal was grown by the Bridgman method. The X-ray rocking curve for the...
The growth of high-quality two-dimensional (2D) layered chalcogenide crystals is highly important fo...
Two-dimensional semiconductors (2SEM) can transform many sectors, from Information and Communication...
Patterning of high-quality two-dimensional chalcogenide crystals with unique planar structures and v...
Despite great progress in synthesis and application of graphene-like materials, it remains a conside...
The key challenge of direct integration of two-dimensional (2D) chalcogenide crystals into functiona...
The two dimensional atomically layered materials are drawing intense attention in recent years, beca...
Two-dimensional (2D) transition-metal monochalcogenides have been recently predicted to be potential...