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Programming origami-like soft actuators using visible light
DOI:10.1016/j.matt.2021.04.004.png)
Abstract
En 中文
Programming remotely activated soft actuators that respond quickly and reversibly while traveling defined distances is a major challenge in materials science. Recently, the precise fabrication of highly functional, photoresponsive soft actuators composed of fused yet competing spiropyran-based bilayered hydrogels that respond to a single visible light source was achieved. When combined with photoinactive hydrogels in precise patterns, a series of extravagant walkersthat undergo predetermined origami-like shape changes is possible.
Journal
IF:
17.5
Papers:
2.5K
Citations:
1.8W
Organization
Cited Papers
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Blood
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The Pathway to Intelligence: Using Stimuli-Responsive Materials as Building Blocks for Constructing Smart and Functional Systems
ADVANCED MATERIALS
IF26.8
Synergistic photoactuation of bilayered spiropyran hydrogels for predictable origami-like shape change
MATTER
IF17.5
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