Mussel-inspired fabrication of functional materials and their environmental applications: Progress and prospects

Mussel-inspired fabrication of functional materials and their environmental applications: Progress and prospects
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DOI:
10.1016/j.apmt.2017.04.001
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发表时间:
2017-06
影响因子:
8.3
通讯作者:
Xiaoyong Zhang;Qiang Huang;Fengjie Deng;Hongye Huang;Qing Wan;Meiying Liu;Yen Wei
Xiaoyong Zhang;Qiang Huang;Fengjie Deng;Hongye Huang;Qing Wan;Meiying Liu;Yen Wei
中科院分区:
材料科学2区
文献类型:
--
作者:
Xiaoyong Zhang;Qiang Huang;Fengjie Deng;Hongye Huang;Qing Wan;Meiying Liu;Yen Wei

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贻贝激发化学法因其实验条件温和、改性效率高、适用范围广而成为近年来研究的热点和热点之一。贻贝激发的化学反应主要依赖于多巴胺对各种材料和表面的粘附。近年来,人们致力于研究贻贝的附着机理,并拓展其在不同领域的应用。在这篇简短的综述中,我们介绍了用于环境应用的功能材料的贻贝启发制造的最新发展。第一部分概述了基于贻贝化学的表面改性策略。基于这些功能材料的环境应用(例如油/水分离、环境吸附和催化剂)也在以下部分中被强调。尽管已经取得了许多进展,但贻贝表面化学在功能材料及其环境应用方面仍有很大的发展空间。
Mussel-inspired chemistry has recently emerged as one of the most important and interest surface modification method owing to its gentle experiment conditions, high modification efficiency and universality. The mussel-inspired chemistry is mainly relied on the adhesion of dopamine toward various materials and surfaces. In recent years, great efforts have been devoted to understanding the adhesion mechanism of mussel and extending its applications in different fields. In this mini-review, we present the very recent development of mussel-inspired fabrication of functional materials for environmental applications. The surface modification strategies that based on mussel-inspired chemistry were outlined in the first part. The environmental applications (e.g. oil/water separation, environmental adsorption and catalysts) based on these functional materials are also highlighted in the following sections. Although many advances have been achieved, there still have a plenty of spaces for further development of mussel-inspired surface chemistry for functional materials and their environmental applications.