Recently developed methods in mechanically guided assembly provide deterministic access to wide-ranging classes of complex, 3D structures in high-performance functional materials, with characteristic length scales that can range from nanometers to centimeters. These processes exploit stress relaxation in prestretched elastomeric platforms to affect transformation of 2D precursors into 3D shapes by in- and out-of-plane translational displacements. This paper introduces a scheme for introducing local twisting deformations into this process, thereby providing access to 3D mesostructures that have strong, local levels of chirality and other previously inaccessible geometrical features. Here, elastomeric assembly platforms segmented into interco...
We present a class of elastic structures which exhibit collective buckling in 3D, and create these b...
Approaches capable of creating 3D mesostructures in advanced materials (device-grade semiconductors,...
Architected metamaterials exhibit unique properties bestowed by their engineered structure rather th...
Recently developed methods in mechanically guided assembly provide deterministic access to wide-rang...
Automatic design of mechanical metamaterials is key to achieving efficiencies in terms of a desired ...
International audienceRationally designed artificial materials enable mechanical properties that are...
Three-dimensional (3D) structures capable of reversible transformations in their geometrical layouts...
Development of schemes to form complex three-dimensional (3D) mesostructures in functional materials...
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 ...
Rational design of artificial micro-structured metamaterials with advanced mechanical and physical p...
Rational design of artificial micro-structured metamaterials with advanced mechanical and physical p...
Development of schemes to form complex three-dimensional (3D) mesostructures in functional materials...
Mechanically guided assembly through buckling-induced two-dimensional (2D)-to- three-dimensional (3D...
Kirigami enables versatile shape transformation from two-dimensional (2D) precursors to 3D architect...
We present a class of elastic structures which exhibit collective buckling in 3D, and create these b...
Approaches capable of creating 3D mesostructures in advanced materials (device-grade semiconductors,...
Architected metamaterials exhibit unique properties bestowed by their engineered structure rather th...
Recently developed methods in mechanically guided assembly provide deterministic access to wide-rang...
Automatic design of mechanical metamaterials is key to achieving efficiencies in terms of a desired ...
International audienceRationally designed artificial materials enable mechanical properties that are...
Three-dimensional (3D) structures capable of reversible transformations in their geometrical layouts...
Development of schemes to form complex three-dimensional (3D) mesostructures in functional materials...
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 ...
Rational design of artificial micro-structured metamaterials with advanced mechanical and physical p...
Rational design of artificial micro-structured metamaterials with advanced mechanical and physical p...
Development of schemes to form complex three-dimensional (3D) mesostructures in functional materials...
Mechanically guided assembly through buckling-induced two-dimensional (2D)-to- three-dimensional (3D...
Kirigami enables versatile shape transformation from two-dimensional (2D) precursors to 3D architect...
We present a class of elastic structures which exhibit collective buckling in 3D, and create these b...
Approaches capable of creating 3D mesostructures in advanced materials (device-grade semiconductors,...
Architected metamaterials exhibit unique properties bestowed by their engineered structure rather th...