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聚多巴胺增强蜂窝状聚氨酯多孔膜的超强粘附力和断裂强度。

The polydopamine-enhanced superadhesion and fracture strength of honeycomb polyurethane porous membranes.

作者信息

Xue Mingshan, Zhou Dan, Ji Yuwei, Xie Yu, Li Changquan, Zhao Jinsheng

机构信息

School of Materials Science and Engineering, Nanchang Hangkong University Nanchang 330063 People's Republic of China

Department of Chemistry and Chemical Engineering, Liaocheng University Liaocheng 252059 People's Republic of China

出版信息

RSC Adv. 2020 Jan 8;10(3):1639-1647. doi: 10.1039/c9ra07887h. eCollection 2020 Jan 7.

Abstract

The superhydrophobic properties of biological surfaces in nature have attracted extensive attention in scientific and industrial circles. Relative to the rolling superhydrophobic state of lotus leaves, the adhesive superhydrophobic state of geckos and is also significant in many fields. In this work, polydopamine (PDA) with its excellent biological compatibility and strong adhesion was selected as a substance to simulate the secretion of the suckers of and it was precipitated at the surface of honeycomb polyurethane porous membranes (PUPM). The results demonstrated that the honeycomb PUPM, as prepared, displayed special super-adhesion properties similar to those of geckos and . PDA formed self-polymerization in aqueous solution was equivalent to a double-sided adhesive, acquiring a micro-nano structure of PDA and PUPM and displaying increased surface hydrophobicity and improved adhesion properties. Even when the surface precipitation of PDA and modification with -dodecyl mercaptan made the contact angle increase to more than 160°, the surface adhesion to water was rather strong and remained stable. The addition of the PDA adhesive can effectively change the microporous structure of PUPM, enhancing the viscosity, and facilitating an enhancement in the fracture strength.

摘要

自然界中生物表面的超疏水特性在科学界和工业界引起了广泛关注。相对于荷叶的滚动超疏水状态,壁虎等的粘附超疏水状态在许多领域也具有重要意义。在这项工作中,选择具有优异生物相容性和强粘附性的聚多巴胺(PDA)作为模拟壁虎吸盘分泌物的物质,并使其沉淀在蜂窝状聚氨酯多孔膜(PUPM)表面。结果表明,所制备的蜂窝状PUPM表现出与壁虎等类似的特殊超粘附特性。在水溶液中形成的PDA自聚合相当于一种双面粘合剂,获得了PDA和PUPM的微纳米结构,并表现出增加的表面疏水性和改善的粘附性能。即使PDA的表面沉淀和用十二烷基硫醇改性使接触角增加到160°以上,其对水的表面粘附力仍然很强且保持稳定。添加PDA粘合剂可以有效改变PUPM的微孔结构,提高粘度,并有助于提高断裂强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2684/9047967/c48533fe1b6e/c9ra07887h-f1.jpg

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