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A reversible underwater glue based on photo- and thermo-responsive dynamic covalent bonds

机译:一种基于照片和热响应动态共价键的可逆水下胶

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摘要

The intriguing reversible underwater adhesive phenomena in nature have inspired the rapid development of artificial adhesives by microscopic topography engineering or chemical modification on solid surfaces. However, most of the existing reversible underwater adhesives often suffer from low adhesion strength or complex fabrication processes. Here we present a reversible underwater glue by incorporating photo- and thermal-responsive anthracenyl moieties into an adhesive polyethylenimine backbone, featuring strong, widely tunable adhesion strength from 50.5 +/- 7.4 to 606.7 +/- 30.3 kPa, desirable fluidity, and compatibility to various substrates. Under orthogonal photo- and thermal stimuli, the reversible anthracene dimerization endows dynamic forming and breaking of cross-linked polymer networks within the glue, leading to reversible adhesion between solid substrates. Moreover, the glue can spontaneously spread over solid surfaces and absorb interfacial water molecules to realize adequate contact, promoting strong adhesion to diverse substrates and liquid environments. This study will provide an important strategy to develop the next generation of smart underwater adhesives.
机译:自然界中的有趣的可逆水下粘合现象引发了通过微观地形工程或固体表面上的化学改性的人工粘合剂的快速发展。然而,大多数现有的可逆水下粘合剂通常遭受低粘合强度或复杂的制造方法。在这里,我们通过将光和热响应的蒽基部分掺入粘合剂聚乙烯骨筒骨架中,具有可逆水下胶水,其具有强大,可调谐的粘合强度为50.5 +/- 7.4至606.7 +/-30.3 KPA,所需的流动性和兼容性各种基板。在正交的光照和热刺激下,可逆蒽二聚化赋予胶水内交联聚合物网络的动态成形和破裂,导致固体基材之间的可逆粘附。此外,胶水可以在固体表面上自发地铺展并吸收界面水分子以实现足够的接触,促进对不同底物和液体环境的强粘合。本研究将提供发展下一代智能水下粘合剂的重要策略。

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