School of Chemical Engineering and Technology, Shaanxi Key Laboratory of Energy Chemical Process Intensification, Institute of Polymer Science in Chemical Engineering , Xi'an Jiao Tong University , Xi'an , Shaanxi 710049 , China.
ACS Appl Mater Interfaces. 2018 Apr 25;10(16):14017-14025. doi: 10.1021/acsami.8b01425. Epub 2018 Apr 16.
A multiresponsive shape memory composite was prepared by incorporating polyaniline (PAn) fibers into polyvinyl alcohol (PVA), where in situ polymerization assisted by surfactant was used to homogeneously disperse PAn fibers in a PVA matrix. The PAn fibers not only increased physical cross-linking points in the system but also served as photothermal conversion reagents, resulting in excellent water-, thermal-, and near-infrared (NIR) light-induced shape memory properties of the composites, where their light-induced shape recovery ratio and speed could be enhanced via the increase of PAn loading percentage and light power density. Moreover, the composites possessed high mechanical properties with tensile strength over 83 MPa. On the basis of these dramatic mechanical properties and shape memory properties, the composites could show high recovery stress over 6.0 MPa, which increased with the increase of temperature and PAn loading percentage. This presented composite could be a great candidate as actuator element for various applications.
一种多响应形状记忆复合材料是通过将聚苯胺(PAn)纤维掺入聚乙烯醇(PVA)中制备的,其中通过表面活性剂辅助的原位聚合将 PAn 纤维均匀地分散在 PVA 基体中。PAn 纤维不仅增加了体系中的物理交联点,而且还作为光热转换试剂,使复合材料具有优异的水热和近红外(NIR)光诱导形状记忆性能,其光诱导形状回复率和速度可以通过增加 PAn 的负载百分比和光功率密度来提高。此外,该复合材料具有超过 83 MPa 的拉伸强度,具有较高的力学性能。基于这些显著的力学性能和形状记忆性能,复合材料可以表现出超过 6.0 MPa 的高回复应力,该回复应力随着温度和 PAn 负载百分比的增加而增加。这种复合材料可能是各种应用中用作致动器元件的理想选择。