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复杂凝聚科学的最新进展。

Recent progress in the science of complex coacervation.

机构信息

Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign, 600 S. Mathews, Urbana, IL, USA.

出版信息

Soft Matter. 2020 Mar 28;16(12):2885-2914. doi: 10.1039/d0sm00001a. Epub 2020 Mar 5.

Abstract

Complex coacervation is an associative, liquid-liquid phase separation that can occur in solutions of oppositely-charged macromolecular species, such as proteins, polymers, and colloids. This process results in a coacervate phase, which is a dense mix of the oppositely-charged components, and a supernatant phase, which is primarily devoid of these same species. First observed almost a century ago, coacervates have since found relevance in a wide range of applications; they are used in personal care and food products, cutting edge biotechnology, and as a motif for materials design and self-assembly. There has recently been a renaissance in our understanding of this important class of material phenomena, bringing the science of coacervation to the forefront of polymer and colloid science, biophysics, and industrial materials design. In this review, we describe the emergence of a number of these new research directions, specifically in the context of polymer-polymer complex coacervates, which are inspired by a number of key physical and chemical insights and driven by a diverse range of experimental, theoretical, and computational approaches.

摘要

复杂凝聚是一种缔合的、液-液相分离,可发生在带相反电荷的高分子物质(如蛋白质、聚合物和胶体)的溶液中。该过程导致凝聚相的形成,这是一个密集的相反电荷成分的混合物,以及一个上清液相,主要缺乏这些相同的物质。该现象在近一个世纪前首次被观察到,此后在广泛的应用中找到了相关性;它们被用于个人护理和食品产品、前沿生物技术,以及作为材料设计和自组装的主题。最近,我们对这一重要的物质现象类别的理解有了新的认识,将凝聚科学带到了聚合物和胶体科学、生物物理学和工业材料设计的前沿。在这篇综述中,我们描述了一些新的研究方向的出现,特别是在聚合物-聚合物复杂凝聚的背景下,这些方向受到了许多关键物理和化学见解的启发,并由各种实验、理论和计算方法推动。

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