The patterned growth of transition metal dichalcogenides (TMDs) and their lateral heterostructures is paramount for the fabrication of application-oriented electronics and optoelectronics devices. However, the large scale patterned growth of TMDs remains challenging. Here, we demonstrate the synthesis of patterned polycrystalline 2D MoS2 thin films on device ready SiO2/Si substrates, eliminating any etching and transfer steps using a combination of plasma enhanced atomic layer deposition (PEALD) and thermal sulfurization. As an inherent advantage of ALD, precise thickness control ranging from a monolayer to few-layered MoS2 has been achieved. Furthermore, uniform films with exceptional conformality over 3D structures are obtained. Finally, ...
Large area MoS2 films with tunable physical-chemical properties are grown on dielectric substrates b...
The rapid cadence of MOSFET scaling is stimulating the development of new technologies and accelerat...
The 2D van der Waals crystals have shown great promise as potential future electronic materials due ...
The patterned growth of transition metal dichalcogenides (TMDs) and their lateral heterostructures i...
Low-temperature controllable synthesis of monolayer-to-multilayer thick MoS2 with tuneable morpholog...
Transition metal dichalcogenides (TMDs) promise to revolutionize optoelectronic applications. While ...
The two-dimensional layer of molybdenum disulfide (MoS2) has recently attracted much interest due to...
Two-dimensional transition metal dichalcogenides, such as MoS2, are intensely studied for applicatio...
Abstract The ongoing miniaturization of electronic devices has boosted the development of new post-s...
The ongoing miniaturization of electronic devices has boosted the development of new post silicon tw...
Transition-metal dichalcogenides such as MoS2 or WS2 are semiconducting materials with a layered str...
Large-scale integration of MoS2in electronic devices requires the development of reliable and cost-e...
ABSTRACT: Two-dimensional MoS2 is a promising material for next-generation electronic and optoelectr...
Extrinsically doped 2D semiconductors are essential for the fabrication of high-performance nanoelec...
MoS2 is a layered 2D semiconductor with thickness-dependent electrical properties. Often, 6–12 nm of...
Large area MoS2 films with tunable physical-chemical properties are grown on dielectric substrates b...
The rapid cadence of MOSFET scaling is stimulating the development of new technologies and accelerat...
The 2D van der Waals crystals have shown great promise as potential future electronic materials due ...
The patterned growth of transition metal dichalcogenides (TMDs) and their lateral heterostructures i...
Low-temperature controllable synthesis of monolayer-to-multilayer thick MoS2 with tuneable morpholog...
Transition metal dichalcogenides (TMDs) promise to revolutionize optoelectronic applications. While ...
The two-dimensional layer of molybdenum disulfide (MoS2) has recently attracted much interest due to...
Two-dimensional transition metal dichalcogenides, such as MoS2, are intensely studied for applicatio...
Abstract The ongoing miniaturization of electronic devices has boosted the development of new post-s...
The ongoing miniaturization of electronic devices has boosted the development of new post silicon tw...
Transition-metal dichalcogenides such as MoS2 or WS2 are semiconducting materials with a layered str...
Large-scale integration of MoS2in electronic devices requires the development of reliable and cost-e...
ABSTRACT: Two-dimensional MoS2 is a promising material for next-generation electronic and optoelectr...
Extrinsically doped 2D semiconductors are essential for the fabrication of high-performance nanoelec...
MoS2 is a layered 2D semiconductor with thickness-dependent electrical properties. Often, 6–12 nm of...
Large area MoS2 films with tunable physical-chemical properties are grown on dielectric substrates b...
The rapid cadence of MOSFET scaling is stimulating the development of new technologies and accelerat...
The 2D van der Waals crystals have shown great promise as potential future electronic materials due ...