Despite the recent growing interest in 2D-MoS2 nanostructures for versatile platforms of sensor applications, robust and practical 2D-MoS2 nanostructures have rarely been reported to date due to the absence of a facile, scalable, and repeatable nanofabrication method. Herein, we show the fabrication of periodically aligned 2D-MoS2 nanoribbon (MNR) array with an area of 2.25 cm2 via direct metal transfer. The MNR width is scalable from 463 nm to 135 nm at 650 nm pitch, and the smallest width is approximately 80 nm. The robust and stable material characteristics are analyzed via various spectroscopic analyses and application sensor devices
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
Monolayer 2D MoS 2 grown by chemical vapor deposition is nanopatterned into nanodots, nanorods, and ...
Quasi-one-dimensional nanotubes and two-dimensional nanoribbons are two fundamental forms of nanostr...
Molybdenum disulfide (MoS2) is a multifunctional material that can be used for various applications....
In this study, we report a facile approach to prepare dense arrays of MoS<sub>2</sub> nanoribbons by...
The last decade has seen a flurry of studies related to graphene nanoribbons owing to their potentia...
Large-scale colloidal synthesis and integration of uniform-sized molybdenum disulfi de (MoS2) nanosh...
2018Using a simple dry transfer process, I construct and characterize three nanoscale MoS2 devices w...
Large-scale colloidal synthesis and integration of uniform-sized molybdenum disulfi de (MoS2) nanosh...
© 2022 Springer Nature Limited. Indirect bandgap of multilayer molybdenum disulfide has been recogni...
Abstract The ongoing miniaturization of electronic devices has boosted the development of new post-s...
Strain engineering in two-dimensional materials (2DMs) has important application potential for elec...
The electronics industry is beginning to show interest in 2D molybdenum disulfide (2D‐MoS2) as a pot...
Tailoring the surface properties of 2D materials, such as transition metal dichalcogenides (TMDCs), ...
The ongoing miniaturization of electronic devices has boosted the development of new post silicon tw...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
Monolayer 2D MoS 2 grown by chemical vapor deposition is nanopatterned into nanodots, nanorods, and ...
Quasi-one-dimensional nanotubes and two-dimensional nanoribbons are two fundamental forms of nanostr...
Molybdenum disulfide (MoS2) is a multifunctional material that can be used for various applications....
In this study, we report a facile approach to prepare dense arrays of MoS<sub>2</sub> nanoribbons by...
The last decade has seen a flurry of studies related to graphene nanoribbons owing to their potentia...
Large-scale colloidal synthesis and integration of uniform-sized molybdenum disulfi de (MoS2) nanosh...
2018Using a simple dry transfer process, I construct and characterize three nanoscale MoS2 devices w...
Large-scale colloidal synthesis and integration of uniform-sized molybdenum disulfi de (MoS2) nanosh...
© 2022 Springer Nature Limited. Indirect bandgap of multilayer molybdenum disulfide has been recogni...
Abstract The ongoing miniaturization of electronic devices has boosted the development of new post-s...
Strain engineering in two-dimensional materials (2DMs) has important application potential for elec...
The electronics industry is beginning to show interest in 2D molybdenum disulfide (2D‐MoS2) as a pot...
Tailoring the surface properties of 2D materials, such as transition metal dichalcogenides (TMDCs), ...
The ongoing miniaturization of electronic devices has boosted the development of new post silicon tw...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
Monolayer 2D MoS 2 grown by chemical vapor deposition is nanopatterned into nanodots, nanorods, and ...
Quasi-one-dimensional nanotubes and two-dimensional nanoribbons are two fundamental forms of nanostr...