超分子化学
弹性(物理)
水下
粘附
自愈水凝胶
弹性模量
模数
材料科学
杨氏模量
纳米技术
复合材料
化学
结晶学
地质学
高分子化学
晶体结构
海洋学
作者
Guannan Ju,Mengjiao Cheng,Fengli Guo,Qian Zhang,Feng Shi
标识
DOI:10.1002/anie.201803632
摘要
Abstract 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 2.5 MPa 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 (0.5 MPa) can achieve underwater adhesion within 10 s with one order of magnitude higher strength than that of rigid substrates (2.5 MPa).
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