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用于视觉信息存储的先进金属-酚醛网络

Advancing Metal-Phenolic Networks for Visual Information Storage.

作者信息

Dai Qiong, Yu Qun, Tian Yuan, Xie Xiaolin, Song Aixin, Caruso Frank, Hao Jingcheng, Cui Jiwei

机构信息

Key Laboratory of Colloid and Interface Chemistry of the Ministry of Education, School of Chemistry and Chemical Engineering , Shandong University , Jinan , Shandong 250100 , China.

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. 2019 Aug 14;11(32):29305-29311. doi: 10.1021/acsami.9b09830. Epub 2019 Jul 31.

Abstract

We report a facile inking strategy for visual information storage (e.g., writing, printing, and beyond) via surface modification of substrates with polyphenols and subsequent in situ formation of metal-phenolic networks (MPNs) on the substrates. The reported technique has several advantages compared with current printing techniques. Diverse substrates can be used to fulfill the requirements for different applications (e.g., printing, writing, painting, and stamping). A range of colors (e.g., yellow, blue, and green) can be realized using different polyphenols (e.g., tannic acid, gallic acid, and pyrogallol) and metal ions (e.g., Cu, Fe, and Ti). The disadvantages (e.g., ink precipitation, color fading) associated with writing or printing using traditional ink can be overcome. The obtained paintings can be easily removed by acids enabling the recycling of substrates. The reported strategy provides a new avenue for the development of portable, nontoxic, and green technologies for writing, printing, and beyond, which expands the applications of MPN-based materials.

摘要

我们报道了一种简便的油墨化策略,用于通过用多酚对基材进行表面改性以及随后在基材上原位形成金属 - 酚醛网络(MPN)来进行视觉信息存储(例如书写、印刷及其他)。与当前的印刷技术相比,所报道的技术具有几个优点。可以使用多种基材来满足不同应用(例如印刷、书写、绘画和压印)的要求。使用不同的多酚(例如单宁酸、没食子酸和连苯三酚)和金属离子(例如铜、铁和钛)可以实现一系列颜色(例如黄色、蓝色和绿色)。使用传统油墨进行书写或印刷时出现的缺点(例如油墨沉淀、褪色)可以被克服。所得到的画作可以很容易地用酸去除,从而实现基材的回收利用。所报道的策略为开发用于书写、印刷及其他用途的便携式、无毒和绿色技术提供了一条新途径,这扩展了基于MPN材料的应用。

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