化学
聚合物
分子
润湿
金属
主客化学
组合化学
纳米材料
儿茶酚
环糊精
共轭体系
模块化设计
纳米技术
有机化学
材料科学
超分子化学
计算机科学
操作系统
复合材料
作者
Shuaijun Pan,Rui Guo,Nadja Bertleff‐Zieschang,Shanshan Li,Quinn A. Besford,Qi‐Zhi Zhong,Gyeongwon Yun,Yunti Zhang,Francesca Cavalieri,Yi Ju,Eirini Goudeli,Joseph J. Richardson,Frank Caruso
标识
DOI:10.1002/anie.201912296
摘要
Abstract The manipulation of interfacial properties has broad implications for the development of high‐performance coatings. Metal–phenolic networks (MPNs) are an emerging class of responsive, adherent materials. Herein, host–guest chemistry is integrated with MPNs to modulate their surface chemistry and interfacial properties. Macrocyclic cyclodextrins (host) are conjugated to catechol or galloyl groups and subsequently used as components for the assembly of functional MPNs. The assembled cyclodextrin‐based MPNs are highly permeable (even to high molecular weight polymers: 250–500 kDa), yet they specifically and noncovalently interact with various functional guests (including small molecules, polymers, and carbon nanomaterials), allowing for modular and reversible control over interfacial properties. Specifically, by using either hydrophobic or hydrophilic guest molecules, the wettability of the MPNs can be readily tuned between superrepellency (>150°) and superwetting (ca. 0°).
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