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A Self-Folding Polymer Film Based on Swelling Metal-Organic Frameworks

机译:基于溶胀金属 - 有机框架的自折叠聚合物膜

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摘要

Herein, we exploit the well-known swelling behaviour of metal-organic frameworks (MOFs) to create a self-folding polymer film. Namely, we show that incorporating crystals of the flexible MOF MIL-88A into a polyvinylidene difluoride (PVDF) matrix affords a polymer composite film that undergoes reversible shape transformations upon exposure to polar solvents and vapours. Since the self-folding properties of this film correlate directly with the swelling properties of the MIL-88A crystals, it selectively bends to certain solvents and its degree of folding can be controlled by controlling the relative humidity. Moreover, it shows a shape-memory effect at relative humidity values from 60% to 90%. As proof of concept, we demonstrate that these composite films can lift cargo and can be used to assemble 3D structures from 2D patterns. Our strategy is a straightforward method for designing autonomous soft materials with folding properties that can be tuned by judicious choice of the constituent flexible MOF.
机译:在此,我们利用金属有机框架(MOF)的众所周知的膨胀行为来产生自折叠聚合物膜。即,我们表明将柔性MIL-88a的晶体掺入聚偏二氟化物(PVDF)基质中,提供聚合物复合膜,其在暴露于极性溶剂和蒸汽时经历可逆形状转换。由于该膜的自折叠性能直接与MIL-88A晶体的溶胀性能相关,因此它选择性地弯曲到某些溶剂,并且可以通过控制相对湿度来控制其折叠程度。此外,它显示了60%至90%的相对湿度值的形状记忆效果。作为概念的证明,我们证明这些复合薄膜可以举起货物,可用于组装来自2D图案的3D结构。我们的策略是设计具有折叠性能的自主软材料的直接方法,可以通过组成柔性MOF的明智选择来调整。

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