Three-dimensional (3D) ferroelectric materials are electromechanical building blocks for achieving human–machine interfacing, energy sustainability, and enhanced therapeutics. However, current natural or synthetic materials cannot offer both a high piezoelectric response and desired mechanical toughness at the same time to meet the practicality. Here, a lamellar ferroelectric metamaterial was created with a ceramic-like piezoelectric property and a bone-like fracture toughness through a low-voltage-assisted 3D printing technology. The one-step printed bulk structure, consisting of periodically intercalated soft ferroelectric and hard electrode layers, exhibited a significantly enhanced longitudinal piezoelectric charge coefficient (d33) of ...
Here we demonstrate that efficient piezoelectric nanoparticle–polymer composite materials can be opt...
The design goal of the project is to use a stock 3D printer to 3D print materials with piezoelectric...
Bionic multifunctional structural materials that are lightweight, strong, and perceptible have shown...
Three-dimensional (3D) ferroelectric materials are electromechanical building blocks for achieving h...
© 2020 National Academy of Sciences. All rights reserved. Molecular ferroelectrics combine electrome...
Through the suitable geometry of a repeating unit, a metamaterial can exhibit a property not present...
This paper presents a comprehensive effort to develop and analyze first-of-its-kind design-specific ...
Piezoelectric composites with 3-3 connectivity gathered attraction due to their potential applicatio...
Bone defects resulting from trauma, disease or surgery are a significant health problem worldwide. T...
The goal of this research is to develop novel 3D printing process and design nanocomposites for piez...
The goal of this research is to develop novel 3D printing process and design nanocomposites for piez...
International audienceAdditive manufacturing (AM), otherwise known as three‐dimensional (3D) printin...
Triply Periodic Co-continuous piezocomposites, which consist of a ferroelectric-ceramic phase and an...
Ferroelectrics are a very important class of functional materials, particularly in the area of elect...
Using piezoelectric materials to harvest energy from human movement provides a potential power sourc...
Here we demonstrate that efficient piezoelectric nanoparticle–polymer composite materials can be opt...
The design goal of the project is to use a stock 3D printer to 3D print materials with piezoelectric...
Bionic multifunctional structural materials that are lightweight, strong, and perceptible have shown...
Three-dimensional (3D) ferroelectric materials are electromechanical building blocks for achieving h...
© 2020 National Academy of Sciences. All rights reserved. Molecular ferroelectrics combine electrome...
Through the suitable geometry of a repeating unit, a metamaterial can exhibit a property not present...
This paper presents a comprehensive effort to develop and analyze first-of-its-kind design-specific ...
Piezoelectric composites with 3-3 connectivity gathered attraction due to their potential applicatio...
Bone defects resulting from trauma, disease or surgery are a significant health problem worldwide. T...
The goal of this research is to develop novel 3D printing process and design nanocomposites for piez...
The goal of this research is to develop novel 3D printing process and design nanocomposites for piez...
International audienceAdditive manufacturing (AM), otherwise known as three‐dimensional (3D) printin...
Triply Periodic Co-continuous piezocomposites, which consist of a ferroelectric-ceramic phase and an...
Ferroelectrics are a very important class of functional materials, particularly in the area of elect...
Using piezoelectric materials to harvest energy from human movement provides a potential power sourc...
Here we demonstrate that efficient piezoelectric nanoparticle–polymer composite materials can be opt...
The design goal of the project is to use a stock 3D printer to 3D print materials with piezoelectric...
Bionic multifunctional structural materials that are lightweight, strong, and perceptible have shown...