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A New Type of Photo-Thermo Staged-Responsive Shape-Memory Polyurethanes Network

机译:一种新型的光热分段响应形状记忆聚氨酯网络

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摘要

In this paper, we developed a photo-thermo staged-responsive shape-memory polymer network which has a unique ability of being spontaneously photo-responsive deformable and thermo-responsive shape recovery. This new type of shape-memory polyurethane network (A-SMPUs) was successfully synthesized with 4,4-azodibenzoic acid (Azoa), hexamethylenediisocyanate (HDI) and polycaprolactone (PCL), followed by chemical cross-linking with glycerol (Gl). The structures, morphology, and shape-memory properties of A-SMPUs have been carefully investigated. The results demonstrate that the A-SMPUs form micro-phase separation structures consisting of a semi-crystallized PCL soft phase and an Azoa amorphous hard phase that could influence the crystallinity of PCL soft phases. The chemical cross-linking provided a stable network and good thermal stability to the A-SMPUs. All A-SMPUs exhibited good triple-shape-memory properties with higher than 97% shape fixity ratio and 95% shape recovery ratio. Additionally, the A-SMPUs with higher Azoa content exhibited interesting photo-thermo two-staged responsiveness. A pre-processed film with orientated Azoa structure exhibited spontaneous curling deformation upon exposing to ultraviolet (UV) light, and curling deformation is constant even under Vis light. Finally, the curling deformation can spontaneously recover to the original shape by applying a thermal stimulus. This work demonstrates new synergistically multi-responsive SMPUs that will have many applications in smart science and technology.
机译:在本文中,我们开发了一种光热阶段响应的形状记忆聚合物网络,该网络具有自发的光响应可变形和热响应形状恢复的独特功能。这种新型的形状记忆聚氨酯网络(A-SMPU)已成功与4,4-偶氮二苯甲酸(Azoa),六亚甲基二异氰酸酯(HDI)和聚己内酯(PCL)合成,然后与甘油(G1)化学交联。仔细研究了A-SMPU的结构,形态和形状记忆特性。结果表明,A-SMPU形成微相分离结构,该结构由半结晶的PCL软相和Azoa非晶质硬相组成,可影响PCL软相的结晶度。化学交联为A-SMPU提供了稳定的网络和良好的热稳定性。所有的A-SMPU均表现出良好的三重形状记忆特性,其形状固定率高于97%,形状恢复率高于95%。此外,具有较高Azoa含量的A-SMPU表现出有趣的光热两阶段响应性。具有取向的Azoa结构的预处理膜在暴露于紫外线(UV)时显示出自发的卷曲变形,并且即使在Vis光下卷曲变形也恒定。最后,通过施加热刺激,卷曲变形可以自发地恢复到原始形状。这项工作演示了新的协同多响应SMPU,它们将在智能科学和技术中具有许多应用。

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