The nondestructive and clean transfer of 2D-layered materials from growth onto target substrates is a key step in their practical applications. Some nonetching transfer methods are developed to avoid contaminations from chemical etchants, while the influences of other transfer media, such as the commonly used water, are rarely explored. Herein, a one-step polymer-free transfer of monolayer MoS2 from glass onto a graphite substrate by using only ultrapure water as the working medium is reported. Based on room-temperature observations, it is revealed that the MoS2-graphite interface is not atomically flat due to the trapping of water clusters, and even extended ultrahigh-vacuum annealing processes cannot easily remove the trapped water. More ...
Two dimensional (2D) materials have found various applications because of their unique physical prop...
MoS2 is an important member of the transition metal dichalcogenides that is emerging as a potential ...
Heterostructures of 2D materials are expected to become building blocks of next generation nanoelect...
The nondestructive and clean transfer of 2D-layered materials from growth onto target substrates is ...
The transfer of synthesized 2D MoS<sub>2</sub> films is important for fundamental and applied resear...
Frictional energy dissipation at the interfaces of two-dimensional (2D) materials through the excita...
© 2019 American Chemical Society. Frictional energy dissipation at the interfaces of two-dimensional...
Frictional energy dissipation at the interfaces of two-dimensional (2D) materials through the excita...
The key steps of a transfer of two-dimensional (2D) materials are the delamination of the as-grown m...
none3noAlthough very similar in many technological applications, graphene and MoS2 bear significant ...
Hydration of interfaces with a layer of water is a ubiquitous phenomenon, which has important implic...
MoS2 is an important member of the transition metal dichalcogenides that is emerging as a potential ...
Two dimensional (2D) materials have found various applications because of their unique physical prop...
© 2020 American Chemical Society. When the two-dimensional material molybdenum disulfide (MoS2) is e...
Two dimensional (2D) materials have found various applications because of their unique physical prop...
Two dimensional (2D) materials have found various applications because of their unique physical prop...
MoS2 is an important member of the transition metal dichalcogenides that is emerging as a potential ...
Heterostructures of 2D materials are expected to become building blocks of next generation nanoelect...
The nondestructive and clean transfer of 2D-layered materials from growth onto target substrates is ...
The transfer of synthesized 2D MoS<sub>2</sub> films is important for fundamental and applied resear...
Frictional energy dissipation at the interfaces of two-dimensional (2D) materials through the excita...
© 2019 American Chemical Society. Frictional energy dissipation at the interfaces of two-dimensional...
Frictional energy dissipation at the interfaces of two-dimensional (2D) materials through the excita...
The key steps of a transfer of two-dimensional (2D) materials are the delamination of the as-grown m...
none3noAlthough very similar in many technological applications, graphene and MoS2 bear significant ...
Hydration of interfaces with a layer of water is a ubiquitous phenomenon, which has important implic...
MoS2 is an important member of the transition metal dichalcogenides that is emerging as a potential ...
Two dimensional (2D) materials have found various applications because of their unique physical prop...
© 2020 American Chemical Society. When the two-dimensional material molybdenum disulfide (MoS2) is e...
Two dimensional (2D) materials have found various applications because of their unique physical prop...
Two dimensional (2D) materials have found various applications because of their unique physical prop...
MoS2 is an important member of the transition metal dichalcogenides that is emerging as a potential ...
Heterostructures of 2D materials are expected to become building blocks of next generation nanoelect...