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单宁基杂化材料及其应用:综述

Tannin-Based Hybrid Materials and Their Applications: A Review.

机构信息

Salzburg Center for Smart Materials, Jakob-Haringer-Straße 2a, 5020 Salzburg, Austria.

Department of Chemistry and Physics of Materials, Paris-Lodron-University Salzburg, Jakob-Haringer-Straße 2A, 5020 Salzburg, Austria.

出版信息

Molecules. 2020 Oct 23;25(21):4910. doi: 10.3390/molecules25214910.

Abstract

Tannins are eco-friendly, bio-sourced, natural, and highly reactive polyphenols. In the past decades, the understanding of their versatile properties has grown substantially alongside a continuously broadening of the tannins' application scope. In particular, recently, tannins have been increasingly investigated for their interaction with other species in order to obtain tannin-based hybrid systems that feature advanced and/or novel properties. Furthermore, in virtue of the tannins' chemistry and their high reactivity, they either physicochemically or physically interact with a wide variety of different compounds, including metals and ceramics, as well as a number of organic species. Such hybrid or hybrid-like systems allow the preparation of various advanced nanomaterials, featuring improved performances compared to the current ones. Consequently, these diverse-shaped materials have potential use in wastewater treatment or catalysis, as well as in some novel fields such as UV-shielding, functional food packaging, and biomedicine. Since these kinds of tannin-based hybrids represent an emerging field, thus far no comprehensive overview concerning their potential as functional chemical building blocks is available. Hence, this review aims to provide a structured summary of the current state of research regarding tannin-based hybrids, detailed findings on the chemical mechanisms as well as their fields of application.

摘要

单宁是环保、生物来源、天然且高反应性的多酚。在过去几十年中,人们对其多功能特性的理解有了实质性的增长,同时单宁的应用范围也在不断扩大。特别是最近,人们越来越关注单宁与其他物种的相互作用,以获得具有先进和/或新颖特性的单宁基杂化系统。此外,由于单宁的化学性质和高反应性,它们可以与各种不同的化合物物理化学或物理相互作用,包括金属和陶瓷以及许多有机物质。这些杂化或类似杂化的系统允许制备各种先进的纳米材料,与现有材料相比具有更好的性能。因此,这些不同形状的材料在废水处理或催化等领域以及在一些新领域(如防紫外线、功能性食品包装和生物医学)具有潜在的用途。由于这些基于单宁的杂化材料代表了一个新兴领域,因此迄今为止,尚无关于它们作为功能性化学构建块的潜力的综合概述。因此,本综述旨在提供基于单宁的杂化材料的当前研究状态的结构化总结,详细阐述其化学机制以及应用领域的研究结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d85b/7660623/73f348dece08/molecules-25-04910-g001.jpg

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