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通过表面引发聚合反应扩展聚合物机械化学工具箱

Expanding the Polymer Mechanochemistry Toolbox through Surface-Initiated Polymerization.

作者信息

Klok Harm-Anton, Genzer Jan

机构信息

École Polytechnique Fédérale de Lausanne (EPFL), Institut des Matériaux and Institut des Sciences et Ingénierie Chimiques, Laboratoire des Polymères, Bâtiment MXD, Station 12, CH-1015 Lausanne, Switzerland.

Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, North Carolina 27695-7905, United States.

出版信息

ACS Macro Lett. 2015 Jun 16;4(6):636-639. doi: 10.1021/acsmacrolett.5b00295. Epub 2015 May 28.

Abstract

Surface-initiated polymerizations represent a versatile toolbox to generate densely grafted assemblies of chain end-tethered polymers. At sufficiently short interchain distances, surface-grafted polymers are forced into an extended chain conformation, which forms the basis of several unique properties, including their ability to withstand efficiently biofouling or to act as low friction coatings. While the effect on materials properties is well-established, only relatively recently first reports have appeared describing that chain stretching in surface-grafted polymer films also impacts chemical stability/reactivity. This Viewpoint presents surface-initiated polymerization as an alternative polymer mechanochemical tool. The absence of an external force field to induce chain elongation and the possibility to modulate chain stretching by varying brush molecular weight and grafting density, in conjunction with electrostatic interactions and nanoinclusions that may be present inside the polymeric grafts, make surface-initiated polymerization an attractive tool to both study and understand the effects of polymer chain conformation on the stability/reactivity of surface-grafted polymers.

摘要

表面引发聚合反应是一种通用的工具,可用于生成链端 tethered 聚合物的密集接枝组装体。在足够短的链间距离下,表面接枝聚合物被迫形成伸展的链构象,这构成了几种独特性质的基础,包括它们有效抵抗生物污染的能力或作为低摩擦涂层的能力。虽然对材料性能的影响已得到充分证实,但直到最近才有首批报告描述表面接枝聚合物膜中的链拉伸也会影响化学稳定性/反应性。本观点将表面引发聚合反应作为一种替代的聚合物机械化学工具呈现出来。不存在诱导链伸长的外力场,并且可以通过改变刷状分子重量和接枝密度来调节链拉伸,再结合聚合物接枝内部可能存在的静电相互作用和纳米夹杂物,使得表面引发聚合反应成为研究和理解聚合物链构象对表面接枝聚合物稳定性/反应性影响的有吸引力的工具。

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