具有光/电协同触发变形的增强形状记忆聚芳醚酮复合驱动器

IF 2.8 3区 化学 Q2 POLYMER SCIENCE
Shuai Yang, Xiaoyun Yang, Zijian Song, Yingchun Li
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引用次数: 0

摘要

在此,我们报道了具有增强形状记忆行为的光/电协同触发形状记忆聚芳醚酮(PAEK)复合驱动器,该驱动器能够满足各种应用机会的形状变形过程。复合致动器具有良好的形状记忆性能,具有较高的形状恢复率(95.1% ~ 99.2%)和固着率(96%以上)。此外,我们构建了光/电协同触发的形状记忆行为,该行为是通过先照射分子链的预先软化来实现的,然后由外加电压触发。光/电协同触发的形状记忆效应(SME)的形状恢复率高达89.6%,高于电协同触发的75.1%,表明形状记忆行为增强。作为比较,我们构建了光/电同步触发的形状记忆行为,恢复率为85.8%。由于增强的形状记忆行为,这些光/电协同触发的形状记忆复合执行器实现了各种应用机会的形状变形过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhanced Shape Memory Poly(Aryl Ether Ketone) Composite Actuators With Light/Electric Synergistic-Triggered Deformations

Enhanced Shape Memory Poly(Aryl Ether Ketone) Composite Actuators With Light/Electric Synergistic-Triggered Deformations

Herein, we report light/electric synergistic-triggered shape memory poly(aryl ether ketone) (PAEK) composite actuators with enhanced shape memory behaviors that are able to fulfill the shape deformation process for various application opportunities. Composite actuators exhibit great shape memory behaviors with a high shape recovery ratio (95.1%–99.2%) and fixity ratio (over 96%). Besides, we construct light/electric synergistic-triggered shape memory behaviors, which are achieved through the prior softening of molecular chains by irradiating firstly, and then triggered by applied voltage. The shape recovery ratio of these light/electric synergistic-triggered shape memory effect (SME) reaches up to 89.6%, which is higher than the electric-triggered SME of 75.1%, indicating enhanced shape memory behaviors. As a comparison, we construct light/electric synchronous-triggered shape memory behaviors, and the recovery ratio is 85.8%. Due to the enhanced shape memory behaviors, these light/electric synergistic-triggered shape memory composite actuators fulfill the shape deformation process for various application opportunities.

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来源期刊
Journal of Applied Polymer Science
Journal of Applied Polymer Science 化学-高分子科学
CiteScore
5.70
自引率
10.00%
发文量
1280
审稿时长
2.7 months
期刊介绍: The Journal of Applied Polymer Science is the largest peer-reviewed publication in polymers, #3 by total citations, and features results with real-world impact on membranes, polysaccharides, and much more.
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