Development of schemes to form complex three-dimensional (3D) mesostructures in functional materials is a topic of broad interest, thanks to the ubiquitous applications across a diversity of technologies. Recently established schemes in the mechanically guided 3D assembly allow deterministic transformation of two-dimensional structures into sophisticated 3D architectures by controlled compressive buckling resulted from strain release of prestretched elastomer substrates. Existing studies mostly exploited supporting substrates made of homogeneous elastomeric material with uniform thickness, which produces relatively uniform strain field to drive the 3D assembly, thus posing limitations to the geometric diversity of resultant 3D mesostructure...
Exploiting advanced 3D designs in micro/nanomanufacturing inspires potential applications in various...
Techniques for forming sophisticated, 3D mesostructures in advanced, functional materials are of rap...
Introducing three-dimensionality to two-dimensional (2D) materials opened new possibilities and nove...
Development of schemes to form complex three-dimensional (3D) mesostructures in functional materials...
Approaches capable of creating 3D mesostructures in advanced materials (device-grade semiconductors,...
Approaches capable of creating 3D mesostructures in advanced materials (device-grade semiconductors,...
Mechanically guided assembly is considered a facile and scalable methodology for fabrication of thre...
Formation of 3D mesostructures in advanced functional materials is of growing interest due to the wi...
Capabilities for assembly of three-dimensional (3D) micro/nanostructures in advanced materials have ...
Three-dimensional (3D) structures capable of reversible transformations in their geometrical layouts...
3D structures that incorporate high-performance electronic materials and allow for remote, on-demand...
This paper describes deterministic assembly processes for transforming conventional, planar devices ...
Recently developed methods in mechanically guided assembly provide deterministic access to wide-rang...
Recently developed methods in mechanically guided assembly provide deterministic access to wide-rang...
Abstract A binary monolayer on an elastic substrate may separate into two phases, which self-assembl...
Exploiting advanced 3D designs in micro/nanomanufacturing inspires potential applications in various...
Techniques for forming sophisticated, 3D mesostructures in advanced, functional materials are of rap...
Introducing three-dimensionality to two-dimensional (2D) materials opened new possibilities and nove...
Development of schemes to form complex three-dimensional (3D) mesostructures in functional materials...
Approaches capable of creating 3D mesostructures in advanced materials (device-grade semiconductors,...
Approaches capable of creating 3D mesostructures in advanced materials (device-grade semiconductors,...
Mechanically guided assembly is considered a facile and scalable methodology for fabrication of thre...
Formation of 3D mesostructures in advanced functional materials is of growing interest due to the wi...
Capabilities for assembly of three-dimensional (3D) micro/nanostructures in advanced materials have ...
Three-dimensional (3D) structures capable of reversible transformations in their geometrical layouts...
3D structures that incorporate high-performance electronic materials and allow for remote, on-demand...
This paper describes deterministic assembly processes for transforming conventional, planar devices ...
Recently developed methods in mechanically guided assembly provide deterministic access to wide-rang...
Recently developed methods in mechanically guided assembly provide deterministic access to wide-rang...
Abstract A binary monolayer on an elastic substrate may separate into two phases, which self-assembl...
Exploiting advanced 3D designs in micro/nanomanufacturing inspires potential applications in various...
Techniques for forming sophisticated, 3D mesostructures in advanced, functional materials are of rap...
Introducing three-dimensionality to two-dimensional (2D) materials opened new possibilities and nove...