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The quintuple-shape memory effect in electrospun nanofiber membranes

机译:电纺纳米纤维膜的五重形状记忆效应

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Shape memory fibrous membranes (SMFMs) are an emerging class of active polymers, which are capable of switching from a temporary shape to their permanent shape upon appropriate stimulation. Quintuple-shape memory membranes based on the thermoplastic polymer Nafion, with a stable fibrous structure, are achieved via electrospinning technology, and possess a broad transition temperature. The recovery of multiple temporary shapes of electrospun membranes can be triggered by heat in a single triple-, quadruple-, quintuple-shape memory cycle, respectively. The fiber morphology and nanometer size provide unprecedented design flexibility for the adjustable morphing effect. SMFMs enable complex deformations at need, having a wide potential application field including smart textiles, artificial intelligence robots, bio-medical engineering, aerospace technologies, etc in the future.
机译:形状记忆纤维膜(SMFM)是一类新兴的活性聚合物,能够在适当的刺激下从暂时形状转变为永久形状。通过静电纺丝技术可实现基于热塑性聚合物Nafion的五重形状记忆膜,具有稳定的纤维结构,并具有较宽的转变温度。电纺丝膜的多个临时形状的恢复可以分别通过单个三重,四重,五重形状的存储循环中的热量触发。纤维的形态和纳米尺寸为可调节的变形效果提供了前所未有的设计灵活性。 SMFM可以根据需要实现复杂的变形,具有广泛的潜在应用领域,包括智能纺织品,人工智能机器人,生物医学工程,航空航天技术等。

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