© 2020 National Academy of Sciences. All rights reserved. Molecular ferroelectrics combine electromechanical coupling and electric polarizabilities, offering immense promise in stimuli-dependent metamaterials. Despite such promise, current physical realizations of mechanical metamaterials remain hindered by the lack of rapid-prototyping ferroelectric metamaterial structures. Here, we present a continuous rapid printing strategy for the volumetric deposition of water-soluble molecular ferroelectric metamaterials with precise spatial control in virtually any three-dimensional (3D) geometry by means of an electric-field–assisted additive manufacturing. We demonstrate a scaffold-supported ferroelectric crystalline lattice that enables self-heal...
Dynamic control over metamaterial optical properties is the basis for active metamaterials devices f...
Metamaterials are rationally designed composites aiming at effective material parameters that go bey...
International audienceAdditive manufacturing (AM), otherwise known as three‐dimensional (3D) printin...
Three-dimensional (3D) ferroelectric materials are electromechanical building blocks for achieving h...
Through the suitable geometry of a repeating unit, a metamaterial can exhibit a property not present...
© 2020 Nikita Alexeyevich ShepelinThe unique capability of piezoelectric materials to convert betwee...
Mechanical metamaterials, a novel class of cellular solids, have recently received much attention si...
Metamaterials are artificially structured materials and exhibit properties that are uncommon or non-...
Metamaterials allow control and tailoring the optical response of natural materials to achieve unpre...
Mechanical metamaterials, a novel class of cellular solids, have recently received much attention si...
Mechanical metamaterials are engineered materials with unconventional mechanical behavior that origi...
Flexoelectricity-based mechanical switching of ferroelectric polarization has recently emerged as a ...
Polymer ferroelectrics are flexible and lightweight electromechanical materials that are widely stud...
ConspectusAlthough the first ferroelectric discovered in 1920 is Rochelle salt, a typical molecular ...
We study the interplay between epitaxial strain, film thickness, and electric field in the creation,...
Dynamic control over metamaterial optical properties is the basis for active metamaterials devices f...
Metamaterials are rationally designed composites aiming at effective material parameters that go bey...
International audienceAdditive manufacturing (AM), otherwise known as three‐dimensional (3D) printin...
Three-dimensional (3D) ferroelectric materials are electromechanical building blocks for achieving h...
Through the suitable geometry of a repeating unit, a metamaterial can exhibit a property not present...
© 2020 Nikita Alexeyevich ShepelinThe unique capability of piezoelectric materials to convert betwee...
Mechanical metamaterials, a novel class of cellular solids, have recently received much attention si...
Metamaterials are artificially structured materials and exhibit properties that are uncommon or non-...
Metamaterials allow control and tailoring the optical response of natural materials to achieve unpre...
Mechanical metamaterials, a novel class of cellular solids, have recently received much attention si...
Mechanical metamaterials are engineered materials with unconventional mechanical behavior that origi...
Flexoelectricity-based mechanical switching of ferroelectric polarization has recently emerged as a ...
Polymer ferroelectrics are flexible and lightweight electromechanical materials that are widely stud...
ConspectusAlthough the first ferroelectric discovered in 1920 is Rochelle salt, a typical molecular ...
We study the interplay between epitaxial strain, film thickness, and electric field in the creation,...
Dynamic control over metamaterial optical properties is the basis for active metamaterials devices f...
Metamaterials are rationally designed composites aiming at effective material parameters that go bey...
International audienceAdditive manufacturing (AM), otherwise known as three‐dimensional (3D) printin...