流变学
超分子化学
粘弹性
纳米技术
材料科学
自愈
软物质
计算机科学
化学
化学工程
工程类
分子
复合材料
胶体
病理
有机化学
医学
替代医学
作者
Arnab Dawn,Harshita Kumari
标识
DOI:10.1002/chem.201703374
摘要
Abstract Self‐healing low molecular weight supramolecular gels (SMGs) represent an emerging class of smart materials, which can closely mimic the complex biological healing process, such as blood clotting, bone repair or wound healing. However, a lack of understanding of the structure–function correlation in the self‐assembly process limits their molecular design and subsequent property tuning. The indispensability of a rheological study on supramolecular gels lies in direct transcription of the assembly property to the viscoelastic behavior of the material. This is similarly relevant to healable and non‐healable systems. Thus, using rheology as a tool for elucidating structure–function relationships in self‐assembled systems has huge potential. This review article will depict a general introduction of rheology in the field of soft matter including SMGs, followed by representative studies with interpretations, and discussion on future challenges. Altogether, this would be an effort, where an in‐depth rheological study complemented with a real‐time visualization with the help of microscopy, and introduction of other sophisticated real‐time experiments, could be a step forward to capture the mystery of self‐assembly process.
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