Atomic-scale information is essential for understanding and designing unique structures and properties of two-dimensional (2D) materials. Recent developments in in situ transmission electron microscopy (TEM) and scanning transmission electron microscopy (STEM) enable research to provide abundant insights into the growth of nanomaterials. In this study, 2D MoS2 is synthesized on a suspended graphene substrate inside a TEM column through thermolysis of the ammonium tetrathiomolybdate (NH4)2MoS4 precursor at 500 °C. To avoid misinterpretation of the in situ STEM images, a deep-learning framework, DeepSTEM, is developed. The DeepSTEM framework successfully reconstructs an object function in atomic-resolution STEM imaging for accurate determinat...
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...
© 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...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
Understanding the microscopic mechanism is fundamental for function-oriented controlled chemical vap...
Recent dramatic progress in studying various two-dimensional (2D) atomic crystals and their heterost...
Recent dramatic progress in studying various two-dimensional (2D) atomic crystals and their heterost...
Two dimensional (2D) materials have found various applications because of their unique physical prop...
Recent dramatic progress in studying various two-dimensional (2D) atomic crystals and their heterost...
Heterostructures of 2D materials are expected to become building blocks of next generation nanoelect...
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...
© 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...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
Understanding the microscopic mechanism is fundamental for function-oriented controlled chemical vap...
Recent dramatic progress in studying various two-dimensional (2D) atomic crystals and their heterost...
Recent dramatic progress in studying various two-dimensional (2D) atomic crystals and their heterost...
Two dimensional (2D) materials have found various applications because of their unique physical prop...
Recent dramatic progress in studying various two-dimensional (2D) atomic crystals and their heterost...
Heterostructures of 2D materials are expected to become building blocks of next generation nanoelect...
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...