Future advances in materials will be aided by improved dimensional control in fabrication of 3D hierarchical structures. Self-rolling technology provides additional degrees of freedom in 3D design by enabling an arbitrary rolling direction with controllable curvature. Here, we demonstrate that deterministic helical structures with variable rolling directions can be formed through releasing a strained nanomembrane patterned in a “utility knife” shape. The asymmetry of the membrane shape provides anisotropic driving force generated by the disparity between the etching rates along different sides in this asymmetric shape. A transient finite element method (FEM) model of diagonal rolling is established to analyze the relationships among geometr...
Artificial architected metamaterials equipped with unique mechanical and physical properties that ar...
Nature uses various activation mechanisms to program complex transformations in the shape and functi...
3D helical mesostructures are attractive for applications in a broad range of microsystem technologi...
Nanomaterials with chiral morphologies hold promise for a wide diversity of technologically importan...
ABSTRACT: Micro- and nanoscale tubular structures can be formed by strain-induced self-rolled-up nan...
Micro- and nanoscale tubular structures can be formed by strain-induced self-rolled-up nanomembranes...
Helical structures are ubiquitous in natural and engineered systems across multiple length scales. E...
Nanometric chiral objects such as twisted or helical nanoribbons represent a new class of objects ha...
Semiconductor nanomembranes are single-crystal sheets with thickness ranging from 5 to 500nm. They a...
Chiral structures play an important role in natural sciences due to their great variety and potentia...
Widespread approaches to fabricate surfaces with robust micro- and nanostructured topographies have ...
Chiroptical materials found in butterflies, beetles, stomatopod crustaceans, and other creatures are...
Structural hierarchy of chirality is observable in a diversity of biological and synthetic materials...
Helical constructs are ubiquitous in nature at all size domains, from molecular to macroscopic. The ...
Three-dimensional (3D) helical mesostructures are attractive for applications in a broad range of mi...
Artificial architected metamaterials equipped with unique mechanical and physical properties that ar...
Nature uses various activation mechanisms to program complex transformations in the shape and functi...
3D helical mesostructures are attractive for applications in a broad range of microsystem technologi...
Nanomaterials with chiral morphologies hold promise for a wide diversity of technologically importan...
ABSTRACT: Micro- and nanoscale tubular structures can be formed by strain-induced self-rolled-up nan...
Micro- and nanoscale tubular structures can be formed by strain-induced self-rolled-up nanomembranes...
Helical structures are ubiquitous in natural and engineered systems across multiple length scales. E...
Nanometric chiral objects such as twisted or helical nanoribbons represent a new class of objects ha...
Semiconductor nanomembranes are single-crystal sheets with thickness ranging from 5 to 500nm. They a...
Chiral structures play an important role in natural sciences due to their great variety and potentia...
Widespread approaches to fabricate surfaces with robust micro- and nanostructured topographies have ...
Chiroptical materials found in butterflies, beetles, stomatopod crustaceans, and other creatures are...
Structural hierarchy of chirality is observable in a diversity of biological and synthetic materials...
Helical constructs are ubiquitous in nature at all size domains, from molecular to macroscopic. The ...
Three-dimensional (3D) helical mesostructures are attractive for applications in a broad range of mi...
Artificial architected metamaterials equipped with unique mechanical and physical properties that ar...
Nature uses various activation mechanisms to program complex transformations in the shape and functi...
3D helical mesostructures are attractive for applications in a broad range of microsystem technologi...