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金属-酚醛网络的喷雾组装:形成、生长和应用。

Spray Assembly of Metal-Phenolic Networks: Formation, Growth, and Applications.

机构信息

ARC Centre of Excellence in Convergent Bio-Nano Science and Technology, and the Department of Chemical Engineering , The University of Melbourne , Parkville , Victoria 3010 , Australia.

出版信息

ACS Appl Mater Interfaces. 2018 Oct 3;10(39):33721-33729. doi: 10.1021/acsami.8b13589. Epub 2018 Sep 21.

Abstract

Hybrid conformal coatings, such as metal-phenolic networks (MPNs) that are constructed from the coordination-driven assembly of natural phenolic ligands, are of interest in areas including biomedicine, separations, and energy. To date, most MPN coatings have been prepared by immersing substrates in solutions containing the phenolic ligands and metal ions, which is a suitable method for coating small or flexible objects. In contrast, more industrially relevant methods for coating and patterning large substrates, such as spray assembly, have been explored to a lesser extent toward the fabrication of MPNs, particularly regarding the effect of process variables on MPN growth. Herein, a spray assembly method was used to fabricate MPN coatings with various phenolic building blocks and metal ions and their formation and patterning were explored for different applications. Different process parameters including solvent, pH, and metal-ligand pair allowed for control over the film properties such as thickness and roughness. On the basis of these investigations, a potential route for the formation of spray-assembled MPN films was proposed. Conditions favoring the formation of bis complexes could produce thicker coatings than those favoring the formation of mono or tris complexes. Finally, the spray-assembled MPNs were used to generate superhydrophilic membranes for oil-water separation and colorless films for UV shielding. The present study provides insights into the chemistry of MPN assembly and holds promise for advancing the fabrication of multifunctional hybrid materials.

摘要

杂化共形涂层,如金属-酚醛网络(MPN),是通过天然酚配体的配位驱动组装构建的,在生物医学、分离和能源等领域具有重要意义。迄今为止,大多数 MPN 涂层是通过将基底浸入含有酚配体和金属离子的溶液中来制备的,这是一种适合于涂覆小物体或柔性物体的方法。相比之下,对于涂覆和图案化大基底,如喷涂组装等更具工业相关性的方法,在制备 MPN 方面的研究较少,特别是关于工艺变量对 MPN 生长的影响。在此,采用喷涂组装方法制备了具有不同酚类构筑块和金属离子的 MPN 涂层,并探索了它们在不同应用中的形成和图案化。不同的工艺参数,包括溶剂、pH 值和金属-配体对,可以控制膜的性质,如厚度和粗糙度。在此基础上,提出了一种喷涂组装 MPN 薄膜形成的潜在途径。有利于形成双配合物的条件可以产生比有利于形成单配合物或三配合物的条件更厚的涂层。最后,喷涂组装的 MPN 被用于制造用于油水分离的超亲水膜和用于紫外线屏蔽的无色膜。本研究为 MPN 组装的化学提供了新的见解,并有望推进多功能杂化材料的制备。

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