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使用给体-受体斯滕豪斯加合物通过宽带可见光对毫米厚的液晶弹性体进行光活化。

Photoactivation of Millimeters Thick Liquid Crystal Elastomers with Broadband Visible Light Using Donor-Acceptor Stenhouse Adducts.

作者信息

Guillen Campos Jesus, Tobin Cassidy, Sandlass Sara, Park Minwook, Wu Yuhang, Gordon Michael, Read de Alaniz Javier

机构信息

Department of Chemistry and Biochemistry, University of California, Santa Barbara, CA, 93106, USA.

Department of Chemical Engineering, University of California, Santa Barbara, CA, 93106, USA.

出版信息

Adv Mater. 2024 Aug;36(35):e2404932. doi: 10.1002/adma.202404932. Epub 2024 Jul 1.

Abstract

Light-responsive liquid crystal elastomers (LCEs) are stimuli-responsive materials that facilitate the conversion of light energy into a mechanical response. In this work, a novel polysiloxane-based LCE with donor-acceptor Stenhouse adduct (DASA) side-chains is synthesized using a late-stage functionalization strategy. It is demonstrated that this approach does not compromise the molecular alignment observed in the traditional Finkelmann method. This easy, single-batch process provides a robust platform to access well-aligned, light-responsive LCE films with thickness ranging from 400 µm to a 14-layer stack that is 5 mm thick. Upon irradiation with low-intensity broadband visible light (100-200 mW cm), these systems undergo 2D planar actuation and complete bleaching. Conversely, exposure to higher-intensity visible light induces bending followed by contraction (300 mW cm). These processes are repeatable over several cycles. Finally, it is demonstrated how light intensity and the resulting heat generation influences the photothermal stationary state equilibrium of DASA, thereby controlling its photoresponsive properties. This work establishes the groundwork for advancement of LCE-based actuators beyond thin film and UV-light reliant systems.

摘要

光响应性液晶弹性体(LCEs)是一种刺激响应材料,可促进光能转化为机械响应。在这项工作中,采用后期功能化策略合成了一种带有供体-受体施滕豪斯加合物(DASA)侧链的新型聚硅氧烷基LCE。结果表明,这种方法不会影响传统芬克耳曼方法中观察到的分子排列。这种简单的单批次工艺提供了一个强大的平台,可用于制备厚度从400微米到5毫米厚的14层堆叠的排列良好的光响应LCE薄膜。在用低强度宽带可见光(100-200 mW/cm²)照射时,这些系统会发生二维平面驱动并完全漂白。相反,暴露在更高强度的可见光下会导致弯曲,随后收缩(300 mW/cm²)。这些过程在几个循环中是可重复的。最后,展示了光强度和由此产生的热量如何影响DASA的光热稳态平衡,从而控制其光响应特性。这项工作为超越薄膜和依赖紫外光的系统推进基于LCE的致动器奠定了基础。

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