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Optically Controlled Solid-to-Liquid Phase Transition Materials Based on Azo Compounds

机译:基于偶氮化合物的光控固液相变材料

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摘要

Phase transition materials can be utilized in a variety of functionalization scenarios, benefiting from the photoinduced changes in their physicochemical properties. Among them, small molecular crystals or liquid-crystalline polymers containing azobenzene moieties that show phototunable melting points or glass transition temperatures, respectively, have proven to be significant in optically controlled functional materials. In recent years, they have been successfully used in reversible mechanical actuation, adhesion, energy storage, self-healing, athermal nanoimprinting, and other applications, which has attracted the attention of more scientists and engineers. In this review, azobenzene-containing materials with photoinduced phase transition capabilities are systematically discussed in terms of molecular design strategies, phase change mechanisms, performance control, methods of preparation of materials, and potential applications. Existing problems and future challenges are also discussed. We hope to provide some inspiration for the development of photocontrolled phase transition materials.
机译:相变材料可用于各种功能化场景,受益于其物理化学性质的光诱导变化。其中,含有偶氮苯部分的小分子晶体或液晶聚合物分别显示出光可调熔点或玻璃化转变温度,已被证明在光控功能材料中具有重要意义。近年来,它们已成功应用于可逆机械驱动、粘附、储能、自愈、无热纳米印迹等应用,引起了更多科学家和工程师的关注。本文从分子设计策略、相变机理、性能控制、材料制备方法和潜在应用等方面系统探讨了具有光生相变能力的偶氮苯材料。还讨论了存在的问题和未来的挑战。我们希望为光控相变材料的发展提供一些启示。

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