Self-assembled mechanical instabilities can offer a new technology roadmap for micro/nanopatterns of two-dimensional (2D) materials, which depends on the deterministic regulation of mechanical instability-induced self-assemblies. However, due to atomic thinness and ultra-low bending stiffness, different types of non-designable and non-deterministic multimode coupling mechanical instabilities, such as multimode-coupled crumpling, chaotic thermal-fluctuation-induced rippling, and unpredictable wrinkling, are extremely easy to be triggered in 2D materials. The above mode-coupled instabilities make it exceedingly difficult to controllably self-assemble 2D nanocrystals into designed morphologies. In this chapters, we will introduce a novel micro...
Two-dimensional (2D) materials are a key target for many applications in the modern day. Self-assemb...
Capabilities for assembly of three-dimensional (3D) micro/nanostructures in advanced materials have ...
The self-assembly of two-dimensional (2D) nanomaterials, an emerging research area, still remains la...
Self-assembled mechanical instabilities can offer a new technology roadmap for micro/nanopatterns of...
Two-dimensional (2D) layered materials, exemplified by the prototypical graphene, have been intensiv...
Introducing three-dimensionality to two-dimensional (2D) materials opened new possibilities and nove...
My PhD work focuses on developing new methods to create the macroscopic patterns in a simple, robust...
Pattern formation, i.e. the outcome of self-organization, has fascinated scientists for centuries. A...
The development of science and technology of advanced materials using nanoscale units can be conduct...
The design and fabrication techniques for microelectromechanical systems (MEMS) and nanodevices are ...
Deformable device technology with advanced functionalities spanning from wearable/personal electroni...
Self-shaping of curved structures, especially those involving flexible thin layers, is attracting in...
Top-down approaches are currently the main contributor of fabricating microelectronic devices. Howev...
My PhD work focuses on developing new methods to create the macroscopic patterns in a simple, robust...
Established less than a decade ago, the fascinating field of two-dimensional (2D) soft materials is ...
Two-dimensional (2D) materials are a key target for many applications in the modern day. Self-assemb...
Capabilities for assembly of three-dimensional (3D) micro/nanostructures in advanced materials have ...
The self-assembly of two-dimensional (2D) nanomaterials, an emerging research area, still remains la...
Self-assembled mechanical instabilities can offer a new technology roadmap for micro/nanopatterns of...
Two-dimensional (2D) layered materials, exemplified by the prototypical graphene, have been intensiv...
Introducing three-dimensionality to two-dimensional (2D) materials opened new possibilities and nove...
My PhD work focuses on developing new methods to create the macroscopic patterns in a simple, robust...
Pattern formation, i.e. the outcome of self-organization, has fascinated scientists for centuries. A...
The development of science and technology of advanced materials using nanoscale units can be conduct...
The design and fabrication techniques for microelectromechanical systems (MEMS) and nanodevices are ...
Deformable device technology with advanced functionalities spanning from wearable/personal electroni...
Self-shaping of curved structures, especially those involving flexible thin layers, is attracting in...
Top-down approaches are currently the main contributor of fabricating microelectronic devices. Howev...
My PhD work focuses on developing new methods to create the macroscopic patterns in a simple, robust...
Established less than a decade ago, the fascinating field of two-dimensional (2D) soft materials is ...
Two-dimensional (2D) materials are a key target for many applications in the modern day. Self-assemb...
Capabilities for assembly of three-dimensional (3D) micro/nanostructures in advanced materials have ...
The self-assembly of two-dimensional (2D) nanomaterials, an emerging research area, still remains la...