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首页> 外文期刊>Angewandte Chemie >Elasticity-Dependent Fast Underwater Adhesion Demonstrated by Macroscopic Supramolecular Assembly
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Elasticity-Dependent Fast Underwater Adhesion Demonstrated by Macroscopic Supramolecular Assembly

机译:通过宏观超分子组件证明了弹性依赖性的快水下粘连

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Macroscopic supramolecular assembly (MSA) is a recent development in supramolecular chemistry to associate visible building blocks through non-covalent interactions in a multivalent manner. Although various substrates (e.g. hydrogels, rigid materials) have been used, a general design rule of building blocks in MSA systems and interpretation of the assembly mechanism are lacking and are required. Herein we design three model systems with varied elastic modulus and correlated the MSA probability with the elasticity. Based on the effects of substrate deformability on multivalency, we have proposed an elastic-modulus-dependent rule that building blocks below a critical modulus of 2.5MPa can achieve MSA for the used host/guest system. Moreover, this MSA rule applies well to the design of materials for fast underwater adhesion: Soft substrates (0.5MPa) can achieve underwater adhesion within 10s with one order of magnitude higher strength than that of rigid substrates (2.5MPa).
机译:宏观超分子组装(MSA)是超分子化学的最近发展,以通过以多价方式通过非共价相互作用将可见结构块相关联。 虽然已经使用了各种基板(例如水凝胶,刚性材料),但是缺乏MSA系统中的构建块的一般设计规则和组装机构的解释。 这里,我们设计具有各种弹性模量的三种模型系统,并将MSA概率与弹性相关联。 基于底物可变形性对多价的影响,我们提出了一种弹性模量依赖的规则,即建立低于2.5MPa的临界模量的块可以实现使用过的主机/访客系统的MSA。 此外,该MSA规则适用于快速水下粘附材料的材料设计:软基板(0.5MPa)可以在10S内实现水下粘附,比刚性基板(2.5MPa)的强度高。

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