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High-performance mussel-inspired adhesives of reduced complexity

机译:降低复杂性的高性能贻贝类胶粘剂

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摘要

Despite the recent progress in and demand for wet adhesives, practical underwater adhesion remains limited or non-existent for diverse applications. Translation of mussel-inspired wet adhesion typically entails catechol functionalization of polymers and/or polyelectrolytes, and solution processing of many complex components and steps that require optimization and stabilization. Here we reduced the complexity of a wet adhesive primer to synthetic low-molecular-weight catecholic zwitterionic surfactants that show very strong adhesion (~50?mJ?m?2) and retain the ability to coacervate. This catecholic zwitterion adheres to diverse surfaces and self-assembles into a molecularly smooth, thin (<4?nm) and strong glue layer. The catecholic zwitterion holds particular promise as an adhesive for nanofabrication. This study significantly simplifies bio-inspired themes for wet adhesion by combining catechol with hydrophobic and electrostatic functional groups in a small molecule.
机译:尽管对湿粘合剂的最新进展和需求,但是实际的水下粘合对于各种应用仍然是有限的或不存在的。贻贝激发的湿附着力的翻译通常需要将邻苯二酚官能化的聚合物和/或聚电解质,以及许多需要优化和稳定化的复杂部件和步骤的溶液处理。在这里,我们将湿式胶粘剂底漆的复杂性降低为具有很强的附着力(〜50?mJ?m?2)并保持凝聚能力的合成的低分子量tech型两性离子表面活性剂。这种幼稚的两性离子可粘附在各种表面上,并自组装成分子光滑,薄(<4?nm)且坚固的胶层。儿茶两性离子作为纳米制造的粘合剂具有特殊的前景。这项研究通过将儿茶酚与小分子中的疏水和静电官能团结合在一起,极大地简化了生物启发的湿粘合主题。

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