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Shape-Memory Properties of Nanocomposites based on Poly(ω-pentadecalactone) and Magnetic Nanoparticles

机译:基于聚(ω-五烷基甲酰基)和磁性纳米粒子的纳米复合材料的形状记忆性能

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Magneto-sensitive shape-memory polymers (SMP) obtained by incorporating magnetic nanoparticles in a SMP matrix are an emerging class of multifunctional materials. The incorporation of the nanoparticles enhanced the mechanical properties and in addition enabled remote actuation by exposure to alternating magnetic fields. Here, we report on the thermally-induced shape-memory properties of such magneto-sensitive nanocomposites based on poly(ω-pentadecalactone) (PPDL) switching segments and magnetic nanoparticles. A series of nanocomposites were prepared by crosslinking of poly(ω-pentadecalactone)dimethacrylate (M_n = 2800 g·mol~(-1)and 5100 g·mol~(-1)) in the presence of silica encapsulated magnetic nanoparticles. The silica shell of the nanoparticles was selected to enhance the distribution and compatibility of the nanoparticles with the polymer matrix. Thermal and mechanical properties of the nanocomposites were explored as a function of PPDL chain length and nanoparticle weight content. All nanocomposites exhibited excellent shape-memory properties with shape fixity rates between 86% and 93% and shape recovery rates above 97%. Potential applications for such shape-memory nanocomposites include smart implants, medical instruments, which could be controlled on demand by thermal or indirect magnetic heating.
机译:通过在SMP基质中掺入磁性纳米粒子而获得的磁敏形状记忆聚合物(SMP)是新一类多功能材料。纳米颗粒的掺入增强了机械性能,并加以通过暴露于交替磁场使远程致动能够。这里,我们报告了基于聚(ω-五角体)(PPDL)开关段和磁性纳米粒子的这种磁敏纳米复合材料的热诱导的形状记忆性能。在二氧化硅包封的磁性纳米粒子存在下,通过交联通过交联(M_N = 2800g·mol〜(-1)和5100g·mol〜(-1))通过交联制备一系列纳米复合材料。选择纳米颗粒的二氧化硅壳以增强纳米颗粒与聚合物基质的分布和相容性。探讨纳米复合材料的热量和机械性能作为PPDL链长和纳米颗粒重量含量的函数。所有纳米复合材料都表现出优异的形状记忆性能,形状固定率为86%至93%,形状回收率高于97%。这种形状记忆纳米复合材料的潜在应用包括智能植入物,医疗器械,可以通过热或间接磁加热来控制。

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