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首页> 外文期刊>Journal of Materials Research >A latent crosslinkable PCL-based polyurethane: Synthesis, shape memory, and enzymatic degradation
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A latent crosslinkable PCL-based polyurethane: Synthesis, shape memory, and enzymatic degradation

机译:一种潜在的可交联的基于PCL的聚氨酯:合成,形状记忆和酶促降解

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Seeking a latent-crosslinkable, mechanically flexible, fully thermoplastic shape memory polymer, we have developed a simple but effective macromolecular design that includes pendent crosslinking sites via the chain extender of a polyurethane architecture bearing semicrystalline poly(epsilon-caprolactone) (PCL) soft segments. This new composition was used to prepare fibrous mats by electrospinning and films by solvent casting, each containing thermal initiators for chemical crosslinking. The one-step synthesis strategy proved successful, and the crosslinking sites within PCL segments resulted in two-way (reversible) shape memory: repeatable elongation (cooling) and contraction (heating) under constant tensile stress. Being fully characterized, the crosslinked fiber mats revealed promising one-way and two-way (reversible) shape memory phenomena, with lower storage moduli though, compared to uncrosslinked films. We observed for both fibrous mats and films that increasing the applied tensile stress led to greater crystallization-induced elongation upon cooling as well as smaller strain hysteresis, particularly for covalently crosslinked samples. Relevant to medical applications, the materials were observed to feature unique, two-stage enzymatic degradation that was sensitive to differences in crystallinity and microstructure among samples.
机译:寻求潜在可交联,机械柔韧性,完全热塑性的形状记忆聚合物,我们开发了一种简单但有效的大分子设计,该设计包括通过带有半结晶聚(ε-己内酯)(PCL)软链段的聚氨酯结构的扩链剂,包括侧链交联位点。这种新的组合物用于通过电纺丝制备纤维毡,并通过溶剂浇铸制备薄膜,每个都包含用于化学交联的热引发剂。一步合成策略被证明是成功的,并且PCL段内的交联位点导致了双向(可逆)形状记忆:在恒定拉伸应力下可重复伸长(冷却)和收缩(加热)。与未交联的薄膜相比,交联的纤维毡具有充分的特征,显示出令人鼓舞的单向和双向(可逆)形状记忆现象,但具有较低的储能模量。我们观察到,对于纤维毡和薄膜,增加施加的拉伸应力会导致冷却时更大的结晶诱导伸长率以及更小的应变滞后现象,特别是对于共价交联的样品。与医学应用有关,观察到该材料具有独特的两阶段酶促降解特性,对样品之间的结晶度和微观结构差异很敏感。

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