Two dimensional (2D) materials have found various applications because of their unique physical properties. For example, graphene has been used as the electron transparent membrane for liquid cell transmission electron microscopy (TEM) due to its high mechanical strength and flexibility, single-atom thickness, chemical inertness, etc. Here, we report using 2D MoS2 as a functional substrate as well as the membrane window for liquid cell TEM, which is enabled by our facile and polymer-free MoS2 transfer process. This provides the opportunity to investigate the growth of Pt nanocrystals on MoS2 substrates, which elucidates the formation mechanisms of such heterostructured 2D materials. We find that Pt nanocrystals formed in MoS2 liquid cells h...
Pt-nanocrystal:MoS2 hybrid materials have promising catalytic properties for hydrogen evolution, and...
Heterostructures of 2D materials are expected to become building blocks of next generation nanoelect...
Understanding the microscopic mechanism is fundamental for function-oriented controlled chemical vap...
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...
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...
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...
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...
Two dimensional (2D) materials have found various applications because of their unique physical prop...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
© Atomic-scale information is essential for understanding and designing unique structures and proper...
Atomic-scale information is essential for understanding and designing unique structures and properti...
Pt-nanocrystal:MoS2 hybrid materials have promising catalytic properties for hydrogen evolution, and...
Heterostructures of 2D materials are expected to become building blocks of next generation nanoelect...
Understanding the microscopic mechanism is fundamental for function-oriented controlled chemical vap...
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...
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...
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...
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...
Two dimensional (2D) materials have found various applications because of their unique physical prop...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
© Atomic-scale information is essential for understanding and designing unique structures and proper...
Atomic-scale information is essential for understanding and designing unique structures and properti...
Pt-nanocrystal:MoS2 hybrid materials have promising catalytic properties for hydrogen evolution, and...
Heterostructures of 2D materials are expected to become building blocks of next generation nanoelect...
Understanding the microscopic mechanism is fundamental for function-oriented controlled chemical vap...