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The Effect of 4-Octyldecyloxybenzoic Acid on Liquid-Crystalline Polyurethane Composites with Triple-Shape Memory and Self-Healing Properties

机译:4-辛基癸氧基苯甲酸对具有三重形状记忆和自愈性能的液态结晶聚氨酯复合材料的影响

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摘要

To better understand shape memory materials and self-healing materials, a new series of liquid-crystalline shape memory polyurethane (LC-SMPU) composites, named SMPU-OOBAm, were successfully prepared by incorporating 4-octyldecyloxybenzoic acid (OOBA) into the PEG-based SMPU. The effect of OOBA on the structure, morphology, and properties of the material has been carefully investigated. The results demonstrate that SMPU-OOBAm has liquid crystalline properties, triple-shape memory properties, and self-healing properties. The incorporated OOBA promotes the crystallizability of both soft and hard segments of SMPU, and the crystallization rate of the hard segment of SMPU decreases when the OOBA-content increases. Additionally, the SMPU-OOBAm forms a two-phase separated structure (SMPU phase and OOBA phase), and it shows two-step modulus changes upon heating. Therefore, the SMPU-OOBAm exhibits triple-shape memory behavior, and the shape recovery ratio decreases with an increase in the OOBA content. Finally, SMPU-OOBAm exhibits self-healing properties. The new mechanism can be ascribed to the heating-induced “bleeding” of OOBA in the liquid crystalline state and the subsequent re-crystallization upon cooling. This successful combination of liquid crystalline properties, triple-shape memory properties, and self-healing properties make the SMPU-OOBAm composites ideal for many promising applications in smart optical devices, smart electronic devices, and smart sensors.
机译:为了更好地了解形状记忆材料和自愈材料,通过将4-辛基癸氧基苯甲酸(OOBA)掺入PEG-基于SMPU。 OOBA对材料的结构,形态和性能的影响已得到仔细研究。结果表明,SMPU-OOBAm具有液晶性质,三重形状记忆性质和自修复性质。掺入的OOBA促进SMPU的软链段和硬链段的结晶性,并且当OOBA含量增加时,SMPU的硬链段的结晶速率降低。另外,SMPU-OOBAm形成两相分离的结构(SMPU相和OOBA相),并且在加热时显示出两步模量变化。因此,SMPU-OOBAm表现出三重形状的记忆行为,并且形状恢复率随着OOBA含量的增加而降低。最后,SMPU-OOBAm表现出自我修复的特性。新机制可以归因于加热诱导的OOBA在液晶状态下的“渗出”,以及随后在冷却时的重结晶。液晶性能,三重形状记忆性能和自愈性能的成功结合使SMPU-OOBAm复合材料成为智能光学设备,智能电子设备和智能传感器中许多有前途应用的理想选择。

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