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DYNAMERS:动态聚合物作为自修复材料。

DYNAMERS: dynamic polymers as self-healing materials.

机构信息

Laboratoire de Chimie Supramoléculaire, ISIS, Université de Strasbourg, 8, allée Gaspard Monge, 67000, Strasbourg, France.

出版信息

Chem Soc Rev. 2015 Jun 7;44(11):3786-807. doi: 10.1039/c5cs00194c.

DOI:10.1039/c5cs00194c
PMID:25940832
Abstract

Importing self-repair or self-healing features into inert materials is of great relevance to material scientists, since it is expected to eliminate the necessity of replenishing a damaged material. Be it material chemistry or more specifically polymer chemistry, such materials have attracted the imagination of both material scientists and chemists. A stroll down the memory lane 70 years back, this might have sounded utopian. However with the current progress in supramolecular chemistry and the emergence of dynamic covalent and non-covalent chemistries, novel perspectives have been opened up to materials science towards the development of dynamic materials (DYNAMATS) and in particular dynamic polymers (DYNAMERS), with the ability to produce such species by custom made designs. Chemistry took giant strides to gain control over the structure and features of materials and, besides basic progress, to apply it for tailor-making matter for applications in our daily life. In that applied perspective, materials science plays a paramount role in shaping our present and in contributing to a sustainable future. The goal is to develop materials, which would be dynamic enough to carry out certain functions as effectively as in biological systems with, however, the freedom to recruit the powers of chemistry on a wider scale, without the limitation imposed by life. Material scientists and in particular polymer chemists may build on chemistry, physics and biology for bridging the gap to develop dynamic materials presenting a wide range of novel functionalities and to convert dreams into reality. In this current review we will focus on developments in the area of dynamic polymers, as a class of dynamic materials presenting self-healing features and, more generally, the ability to undergo adaptation under the effect of physical and/or chemical agents, and thus function as adaptive polymers or ADAPTAMERS.

摘要

将自修复或自愈合功能引入惰性材料与材料科学家密切相关,因为这有望消除对受损材料进行补充的必要性。无论是材料化学还是更具体的聚合物化学,这些材料都引起了材料科学家和化学家的想象。回顾 70 年前,这听起来可能有些乌托邦。然而,随着超分子化学的当前进展以及动态共价和非共价化学的出现,为材料科学开辟了新的视角,朝着开发动态材料(DYNAMATS)特别是动态聚合物(DYNAMERS)的方向发展,具有通过定制设计产生此类物质的能力。化学在控制材料的结构和特性方面取得了巨大的进步,除了取得基本进展外,还将其应用于为日常生活中的应用定制物质。在这种应用视角下,材料科学在塑造我们的现在和为可持续的未来做出贡献方面发挥着至关重要的作用。目标是开发足够动态的材料,以有效地执行某些功能,就像在生物系统中一样,但是具有在更广泛的范围内招募化学力量的自由,而不受生命的限制。材料科学家,特别是聚合物化学家,可以借鉴化学、物理和生物学知识,弥合差距,开发具有广泛新型功能的动态材料,并将梦想变为现实。在本综述中,我们将重点介绍动态聚合物领域的发展,作为一类具有自修复功能的动态材料,更广泛地说,具有在物理和/或化学试剂的作用下进行自适应的能力,并因此作为自适应聚合物或 ADAPTAMERS 发挥作用。

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