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Texture-Dependent Adhesion in Polydopamine Nanomembranes

机译:聚二胺纳米爆炸中的纹理依赖性粘附

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摘要

The conformal nature of in situ polymerization High of adhesive dopamine molecules permits the strong under-water adhesion between polydopamine (PDA) nanomembranes and the target substrates. However, the adhesive interaction between the postdeposit PDA nanomembranes and other macrobodies is strongly influenced by the texture of PDA nanomembranes. Here we report the texture-dependent adhesion of PDA nanomembranes both in air and aqueous environments. Despite the nanometer-scale roughness of PDA nanomembranes, interfacial adhesion between PDA nano membranes and elastomeric bodies are the strong function of the root-mean-square roughness of PDA nanomembranes, root-mean-square gradient of PDA nanomembranes, and the elasticity of the bulk materials. Reduced adhesion due to increased texture is intensified in hydrated conditions, possibly hinting that the conventional explanation of the negative effect of water to adhesion from a molecular level needs to be revisited. These findings can inform the role of adhesive interaction in conformal coatings and provide an explanation for the differential adhesion observed in freestanding PDA nanomembranes.
机译:原位聚合高粘合剂多巴胺分子的共形性质允许多碳胺(PDA)纳米爆发和靶衬底之间的强水粘附。然而,延迟PDA纳米爆发和其他大转发之间的粘合剂相互作用受到PDA纳米爆炸的质地的强烈影响。在这里,我们在空气和水环境中报告了PDA纳米爆发的纹理依赖性粘附。尽管PDA纳米爆炸的纳米级粗糙度,PDA纳米膜和弹性体之间的界面粘附是PDA纳米爆炸的根平均方形粗糙度的强函数,PDA纳米爆发的根均匀 - 方形梯度和弹性散装材料。在水合条件下强化由于纹理增加而导致的粘附性降低,可能暗示了对从分子水平的对粘附性的常规解释,需要重新审视。这些发现可以向共形涂层中的粘合剂相互作用提供信息,并提供对独立式PDA纳米爆炸中观察到的差异粘合的解释。

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