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明日塑料中的嵌段共聚物。

Block copolymers in tomorrow's plastics.

作者信息

Ruzette Anne-Valérie, Leibler Ludwik

机构信息

Laboratoire Matière Molle et Chimie, ESPCI-CNRS (UMR 167), ESPCI, 10 rue Vauquelin, 75005 Paris, France.

出版信息

Nat Mater. 2005 Jan;4(1):19-31. doi: 10.1038/nmat1295.

Abstract

In this era of portability and rapid technological advances, polymers are more than ever under pressure to be cheap and offer tailored property profiles. Often, the key lies in designing blends and alloys carefully structured at the appropriate scale (preferably less than a micrometre) from existing polymers. Block copolymers - two or more different polymer chains linked together - have long been thought to offer the solution. Local segregation of the different polymer blocks yields molecular-scale aggregates of nanometre size. Recent progress in synthetic chemistry has unveiled unprecedented opportunities to prepare tailored block copolymers at reasonable cost. Over twenty years of intense academic research and the advent of powerful statistical theories and computational methods should help predict the equilibrium and even non-equilibrium behaviour of copolymers and their blends with other polymers. The gap between block copolymer self-assembly and affordable nanostructured plastics endowed with still-unexplored combinations of properties is getting narrower.

摘要

在这个便携性和技术快速发展的时代,聚合物比以往任何时候都面临着降低成本并提供定制化性能的压力。通常,关键在于精心设计由现有聚合物在适当尺度(最好小于一微米)下构建的共混物和合金。嵌段共聚物——由两条或更多不同聚合物链连接在一起——长期以来一直被认为是解决方案。不同聚合物链段的局部偏析会产生纳米尺寸的分子尺度聚集体。合成化学的最新进展为以合理成本制备定制化嵌段共聚物带来了前所未有的机遇。二十多年的深入学术研究以及强大的统计理论和计算方法的出现,应该有助于预测共聚物及其与其他聚合物共混物的平衡甚至非平衡行为。嵌段共聚物自组装与具有尚未探索的性能组合的经济实惠的纳米结构塑料之间的差距正在缩小。

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