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Polymeric shape memory nanocomposites with heterogeneous twin switches

机译:具有异质双开关的聚合物形状记忆纳米复合材料

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摘要

A novel smart nanocomposite featuring a heterogeneous-twin-switch shape memory effect using cellulose-whiskers as reinforcement and segmented shape-memory-polyurethane as matrix is reported. The composite maintains the thermal-induced shape switchable effect originally existing in the polymer matrix and simultaneously possesses water-induced shape memory effect due to the percolation network of the cellulose whiskers whose hydrogen bonding can be regulated by water reversibly. The composite is capable of fixing the total temporary shape (shape A) through cooling and drying after the extension in a warm water condition. Reversibly, the extended composite partially recovers to the temporary shape (shape B) triggered by thermal stimuli solely and consequently from there to the original shape (shapeC) triggered by thermal and water stimulus. This is a new strategy to combine two different types of switches into one material and the responsiveness of the composite is different from the conventional ones being able to response to one external stimulus only. This study gives a new mechanism of developing multi-responsive and multi-shape change materials and is believed to have enormous potential in applications where multi-shape changes responding to different stimulus are required.
机译:报道了一种新型智能纳米复合材料,该复合材料具有以纤维素晶须为增强材料和分段形状记忆聚氨酯为基质的异质双开关形状记忆效应。该复合材料保持了最初存在于聚合物基质中的热诱导形状可转换效应,并且由于纤维素晶须的渗透网络(其氢键可通过水可逆地调节)而同时具有水诱导的形状记忆效应。在温水条件下拉伸后,复合材料能够通过冷却和干燥来固定整个临时形状(形状A)。可逆地,扩展的复合材料仅部分地恢复到仅由热刺激触发的临时形状(形状B),因此从那里恢复到由热刺激和水刺激触发的原始​​形状(形状C)。这是将两种不同类型的开关组合为一种材料的新策略,并且复合材料的响应能力不同于仅能够响应一种外部刺激的传统响应能力。这项研究提供了一种开发多响应和多形状变化材料的新机制,并被认为在需要响应不同刺激的多形状变化的应用中具有巨大的潜力。

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