Centre of Advanced Structural Ceramics, Department of Materials, Imperial College London, London SW7 2AZ, U.K.
State Key Laboratory of Physical Chemistry of Solid Surfaces, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.
ACS Nano. 2021 Dec 28;15(12):19194-19201. doi: 10.1021/acsnano.1c03882. Epub 2021 Nov 19.
Dry adhesives that combine strong adhesion, high transparency, and reusability are needed to support developments in emerging fields such as medical electrodes and the bonding of electronic optical devices. However, achieving all of these features in a single material remains challenging. Herein, we propose a pressure-responsive polyurethane (PU) adhesive inspired by the octopus sucker. This adhesive not only showcases reversible adhesion to both solid materials and biological tissues but also exhibits robust stability and high transparency (>90%). As the adhesive strength of the PU adhesive corresponds to the application force, adhesion could be adjusted by the preloading force and/or pressure. The adhesive exhibits high static adhesion (∼120 kPa) and 180° peeling force (∼500 N/m), which is far stronger than those of most existing artificial dry adhesives. Moreover, the adhesion strength is effectively maintained even after 100 bonding-peeling cycles. Because the adhesive tape relies on the combination of negative pressure and intermolecular forces, it overcomes the underlying problems caused by glue residue like that left by traditional glue tapes after removal. In addition, the PU adhesive also shows wet-cleaning performance; the contaminated tape can recover 90-95% of the lost adhesion strength after being cleaned with water. The results show that an adhesive with a microstructure designed to increase the contribution of negative pressure can combine high reversible adhesion and long fatigue life.
需要具有强附着力、高透明度和可重复使用性的干式粘合剂,以支持新兴领域的发展,如医疗电极和电子光学器件的键合。然而,在单一材料中实现所有这些特性仍然具有挑战性。在此,我们提出了一种受章鱼吸盘启发的压敏聚氨酯(PU)粘合剂。这种粘合剂不仅展示了对固体材料和生物组织的可逆附着力,而且还具有强大的稳定性和高透明度(>90%)。由于 PU 粘合剂的粘合强度与应用力相对应,因此可以通过预加载力和/或压力来调节粘合强度。该粘合剂具有较高的静态附着力(约 120 kPa)和 180°剥离力(约 500 N/m),远远超过大多数现有的人工干式粘合剂。此外,即使经过 100 次粘接-剥离循环,粘合强度也能有效保持。由于胶带依靠负压和分子间力的结合,因此克服了传统胶带去除后残留胶渍等潜在问题。此外,PU 粘合剂还具有湿清洁性能;受污染的胶带在用水清洁后可恢复失去的粘合强度的 90-95%。结果表明,一种具有增加负压贡献的微观结构设计的粘合剂可以结合高的可逆附着力和长的疲劳寿命。