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Stimuli-responsive chemomechanical actuation: A hybrid materials approach
Lauren D. Zarzar
, Joanna Aizenberg
Chemistry
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peer-review
95
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Keyphrases
Hybrid Materials
100%
Material Approaches
100%
Actuation
100%
Chemo-mechanical
100%
Stimuli-responsive
100%
Chemo-mechanical Behavior
75%
Highly Tunable
50%
Customizable
25%
Physical Characteristics
25%
Microstructure
25%
Feedback Loop
25%
Microfluidics
25%
Chemical Stimulation
25%
Chemical Cues
25%
Surface Material
25%
Response Properties
25%
Behavioral Properties
25%
Environmental Cues
25%
Integral Component
25%
Smart Technology
25%
Actuation Mechanism
25%
Array Structure
25%
Mechanical Motion
25%
Artificial Materials
25%
PH-sensitive Hydrogel
25%
Innate Ability
25%
Complex Set
25%
Multiple Materials
25%
Biological Organisms
25%
Materials Platforms
25%
Mechanical Reconfiguration
25%
Dynamic Materials
25%
Adaptive Technology
25%
High-aspect-ratio Microstructures
25%
Bioinspired Approach
25%
Actuation Behavior
25%
Hybrid Surface
25%
Two-material Structure
25%
Engineering
Actuation
100%
Hydrogel
100%
Engineering
25%
Microstructure
25%
Reconfiguration
25%
Adaptability
25%
Feedback Loop
25%
Material Surface
25%
High Aspect Ratio
25%
Macroscale
25%
Forming
25%
Multiple Material
25%
Material Science
Hybrid Material
100%
Hydrogel
100%
Nanocrystalline Material
25%
Materials Structure
25%
Novel Material
25%
Chemical Engineering
Hydrogel
100%