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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Photoinduced triple shape memory polyurethane enabled by doping with azobenzene and GO
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Photoinduced triple shape memory polyurethane enabled by doping with azobenzene and GO

机译:通过偶氮苯和GO掺杂实现光诱导三重形状记忆聚氨酯

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摘要

A polymer-dispersed azobenzene and GO nanocomposite film was fabricated with shape memory polyurethane as a matrix. Upon mechanical stretching, the nanocomposite film exhibited a photoresponsive triple shape-memory effect by successive exposure to UV and NIR light. Here, azobenzene and GO may act as photo-harvesters for UV and NIR light, respectively, and their photoresponsiveness was transferred to the host polymer films. On one hand, UV light caused the photomechanical motion of azobenzene materials, leading to the photoinduced bending behavior for the composite film. On the other hand, NIR brought about the photothermal effect of GO, heating the film and triggering the thermoresponsive shape-memory of polyurethane. The nanocomposite film showed good mechanical properties, which can be self-healed upon NIR irradiation. Benefitting from these light-directed triple shape-memory properties, simulation of flower blooming and fading was successfully achieved, indicating its potential application as a biomimetic actuator and other functional devices.
机译:以形状记忆聚氨酯为基质,制备了聚合物分散的偶氮苯和GO纳米复合薄膜。在机械拉伸后,纳米复合膜通过连续暴露于紫外线和近红外光下表现出光响应三重形状记忆效应。在这里,偶氮苯和GO分别可以充当UV和NIR光的光吸收剂,它们的光响应性已转移到主体聚合物薄膜上。一方面,紫外线引起偶氮苯材料的光机械运动,从而导致复合膜的光诱导弯曲行为。另一方面,NIR引起GO的光热效应,加热薄膜并触发聚氨酯的热响应形状记忆。纳米复合膜显示出良好的机械性能,可以在近红外辐射下自愈。受益于这些光导三重形状记忆特性,成功实现了花朵盛开和褪色的模拟,表明其潜在的应用作为仿生致动器和其他功能性设备。

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