在光敏聚合物复合物中,以极化驱动的可逆执行
David Urban1,2, Niccolò Marcucci2, Christoph Hubertus Wölfle3
1Department of Electronic Systems, Norwegian University of Science and Technology, O.S. Bragstads plass 2b, 7034, Trondheim, Norway.
Nature communications
|October 27, 2023
概括
这项研究引入了一种新型的亚聚合物复合物,该复合物能够在对偏光的反应中实现可逆的形状切换. 这一突破克服了塑料变形的局限性,为先进的可调节设备铺平了道路.
科学领域:
- 材料科学 材料科学 材料科学
- 聚合物科学 聚合物科学
- 光学和光子学 在光学和光子学.
背景情况:
- 无形亚聚合物在可调节设备上表现出异构的,偏振依赖的光响应.
- 目前的亚聚合物应用受到不可逆转的塑料变形的限制,阻碍了动态控制.
- 对于先进的光敏材料来说,可逆变形特性至关重要.
研究的目的:
- 开发一种光敏复合材料,具有可逆形状切换能力.
- 为了克服以亚聚合物为基础的执行器中塑性变形的局限性.
- 为了实现动态的,使用偏光实现远程控制的启动.
主要方法:
- 在状弹性矩阵中嵌入高密度亚聚合物微粒.
- 在显微镜图像上使用变形追踪算法来量化诱导的应变.
- 开发独立的3D执行器,由带有偏振控制的单波长激光控制.
主要成果:
- 复合材料具有可逆的形状切换,具有两个自由度,由光极化决定.
- 实现了局部菌株和轻微的爬行损失的量化.
- 展示了能够扭转,3D执行器,卷入,抓取,和无旋转的旋转.
结论:
- 亚聚合物复合物为可逆,光控制的形状转换提供了一条途径.
- 这种材料克服了以前的局限性,使复杂和动态的执行成为可能.
- 开发的执行器显示了先进的,远程调节的设备的潜力.
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