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Programmable Shape Morphing Metasponge

delete2023-04-18
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OA
AI
F
Fernando Soto
A
Annie Tsui
S
Sushruta Surappa
R
Rajib Ahmed
王捷 cover
王捷 (Jie Wang)
U
Ufuk Kılınç
D
Demir Akin
U
Utkan Demirci *
DOI:10.1002/aisy.202300043delete
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Abstract

Abstract

En 中文
Smart materials respond to environmental signals by changing their microstructure and physical properties. Programming multiple behaviors and functions into a single material could increase its utility and adaptability to ever-changing environmental conditions. A swellable and stretchable metamaterial hydrogel or metasponge engineered to morph into customized sizes and shapes that dynamically tune its physical properties and functions is reported. Multiple case studies that take advantage of the morphing properties of the metasponge, including robotic actuation, light guidance, optical and sonic invisibility (cloaking), adaptation of propulsion mode, sampling, and multiple biomedical applications, are illustrated. Developing multifunctional smart materials in which logic is programmed into the materials rather than electronic components could pave a new path to autonomy and dynamic responses in soft robots, sensors, and actuators.
Keywords:
liquid sampling
multifunctional
responsive materials
soft robots
swelling

Journal

Advanced Intelligent Systems cover
Advanced Intelligent Systems
IF:
6.1
Papers:
2.0K
Citations:
8.4K

Organization

S
Stanford University
Scholars:
9.6W
Papers: 8.2W
Citations: 17.0W