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软物质中的缺陷与缺陷工程

Defects and defect engineering in Soft Matter.

作者信息

Jangizehi Amir, Schmid Friederike, Besenius Pol, Kremer Kurt, Seiffert Sebastian

机构信息

Johannes Gutenberg University Mainz, Department of Chemistry, Duesbergweg 10-14, D-55128 Mainz, Germany.

出版信息

Soft Matter. 2020 Dec 28;16(48):10809-10859. doi: 10.1039/d0sm01371d. Epub 2020 Dec 11.

Abstract

Soft matter covers a wide range of materials based on linear or branched polymers, gels and rubbers, amphiphilic (macro)molecules, colloids, and self-assembled structures. These materials have applications in various industries, all highly important for our daily life, and they control all biological functions; therefore, controlling and tailoring their properties is crucial. One way to approach this target is defect engineering, which aims to control defects in the material's structure, and/or to purposely add defects into it to trigger specific functions. While this approach has been a striking success story in crystalline inorganic hard matter, both for mechanical and electronic properties, and has also been applied to organic hard materials, defect engineering is rarely used in soft matter design. In this review, we present a survey on investigations on defects and/or defect engineering in nine classes of soft matter composed of liquid crystals, colloids, linear polymers with moderate degree of branching, hyperbranched polymers and dendrimers, conjugated polymers, polymeric networks, self-assembled amphiphiles and proteins, block copolymers and supramolecular polymers. This overview proposes a promising role of this approach for tuning the properties of soft matter.

摘要

软物质涵盖了基于线性或支化聚合物、凝胶和橡胶、两亲(宏观)分子、胶体以及自组装结构的广泛材料。这些材料在各个行业都有应用,对我们的日常生活都极为重要,并且它们控制着所有生物功能;因此,控制和定制它们的性能至关重要。实现这一目标的一种方法是缺陷工程,其旨在控制材料结构中的缺陷,和/或有意地向其中引入缺陷以触发特定功能。虽然这种方法在晶体无机硬质材料中,无论是对于机械性能还是电子性能,都取得了显著成功,并且也已应用于有机硬质材料,但缺陷工程在软物质设计中很少被使用。在这篇综述中,我们对由液晶、胶体、具有适度支化度的线性聚合物、超支化聚合物和树枝状聚合物、共轭聚合物、聚合物网络、自组装两亲物和蛋白质、嵌段共聚物以及超分子聚合物组成的九类软物质中的缺陷和/或缺陷工程研究进行了综述。这一概述提出了这种方法在调节软物质性能方面的潜在作用。

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