Light-Controlled Triple-Shape-Memory, High- Permittivity Dynamic Elastomer for Wearable Multifunctional Information Encoding Devices

ACS NANO(2022)

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摘要
Self-powered information encoding devices (IEDs) have drawn considerable interest owing to their capability to process information without batteries. Next-generation IEDs should be reprogrammable, self-healing, and wearable to satisfy the emerging requirements for multifunc-tional IEDs; however, such devices have not been demon-strated. Herein, an integrated triboelectric nanogenerator-based IED with the aforementioned features was developed based on the designed light-responsive high-permittivity poly(sebacoyl diglyceride-co-4,4 & PRIME;-azodibenzoyl diglyceride) elastomer (PSe-DAE) with a triple-shape-memory effect. The electrical memory feature was achieved through a microscale shape-memory property, enabling spatiotemporal information reprogramming for the IED. Macroscale shape-memory behavior afforded the IED shape-reprogramming ability, yielding wearable and detachable features. The dynamic transesterifications and light-heating groups in the PSeDAE afforded a remotely controlled rearrangement of its cross-linking network, producing the self-healing IED.
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关键词
poly(glycerol sebacate),triple-shape-memory effect,dielectric elastomer,electrical memory effect,encoding device
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