Cuttlefish can modify their body shape and both their pigmentary and structural colors for protection. This adaptability has inspired the development of appearance-changing polymers such as structural color actuators, although in most cases, the original shape has been confined to being flat, and pigmented structural color actuators have not yet been reported. Here, we have successfully created a pigmented structural color actuator using a cholesteric liquid crystal elastomer with a lower actuation temperature where both actuation and coloration (structural and pigmental) are tunable with temperature and NIR light. The shape, structural color, and absorption of the NIR-absorbing dye pigment of the actuator all change with temperature. Light...
In article number 1905219, Albertus P. H. J. Schenning and co‐workers fabricate micron‐sized structu...
The response of soft actuators made of stimuli-responsive materials can be phenomenologically descri...
To add more functionalities and overcome the limitation in conventional soft robots, highly anisotro...
Cuttlefish can modify their body shape and both their pigmentary and structural colors for protectio...
Animals can modify their body shape and/or color for protection, camouflage and communication. This ...
Cephalopods, such as cuttlefish, demonstrate remarkable adaptability to the coloration and texture o...
In nature, many flowers can open their petals into blooming flowers or furl them into buds and simul...
Externally induced color- and shape-changes in micrometer-sized objects are of great interest in nov...
Abstract The combination of complex perception, defense, and camouflage mechanisms is a pivotal inst...
Liquid crystal elastomers are among the best candidates for artificial muscles, and the materials of...
Abstract The ability of some animals to rapidly change their colors can greatly improve their chance...
A chemically programmed photochromic liquid crystal (LC) polymer was newly synthesized and used to f...
Bioinspired material research aims at learning from the sophisticated design principles of nature, i...
Soft actuator is a promising candidate for replacing a traditional rigid materials-based actuator wh...
In article number 1905219, Albertus P. H. J. Schenning and co‐workers fabricate micron‐sized structu...
The response of soft actuators made of stimuli-responsive materials can be phenomenologically descri...
To add more functionalities and overcome the limitation in conventional soft robots, highly anisotro...
Cuttlefish can modify their body shape and both their pigmentary and structural colors for protectio...
Animals can modify their body shape and/or color for protection, camouflage and communication. This ...
Cephalopods, such as cuttlefish, demonstrate remarkable adaptability to the coloration and texture o...
In nature, many flowers can open their petals into blooming flowers or furl them into buds and simul...
Externally induced color- and shape-changes in micrometer-sized objects are of great interest in nov...
Abstract The combination of complex perception, defense, and camouflage mechanisms is a pivotal inst...
Liquid crystal elastomers are among the best candidates for artificial muscles, and the materials of...
Abstract The ability of some animals to rapidly change their colors can greatly improve their chance...
A chemically programmed photochromic liquid crystal (LC) polymer was newly synthesized and used to f...
Bioinspired material research aims at learning from the sophisticated design principles of nature, i...
Soft actuator is a promising candidate for replacing a traditional rigid materials-based actuator wh...
In article number 1905219, Albertus P. H. J. Schenning and co‐workers fabricate micron‐sized structu...
The response of soft actuators made of stimuli-responsive materials can be phenomenologically descri...
To add more functionalities and overcome the limitation in conventional soft robots, highly anisotro...