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三缩脲基及其在具有自修复性能的聚二甲基硅氧烷基超分子材料中的应用。

The tris-urea motif and its incorporation into polydimethylsiloxane-based supramolecular materials presenting self-healing features.

机构信息

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

出版信息

Chemistry. 2013 Jul 1;19(27):8814-20. doi: 10.1002/chem.201203518. Epub 2013 May 13.

Abstract

Materials of supramolecular nature have attracted much attention owing to their interesting features, such as self-reparability and material robustness, that are imparted by noncovalent interactions to synthetic materials. Among the various structures and synthetic methodologies that may be considered for this purpose, the introduction of extensive arrays of multiple hydrogen bonds allows for the formation of supramolecular materials that may, in principle, present self-healing behavior. Hydrogen bonded networks implement dynamic noncovalent interactions. Suitable selection of structural units gives access to novel dynamic self-repairing materials by incrementing the number of hydrogen-bonding sites present within a molecular framework. Herein, we describe the formation of a tris-urea based motif giving access to six hydrogen-bonding sites, easily accessible through reaction of carbohydrazide with an isocyanate derivative. Extension towards the synthesis of multiply hydrogen-bonded supramolecular materials has been achieved by polycondensation of carbohydrazide with a bis-isocyanate component derived from poly-dimethylsiloxane chains. Such materials underwent self-repair at a mechanically cut surface. This approach gives access to a broad spectrum of materials of varying flexibility by appropriate selection of the bis-isocyanate component that forms the polymer backbone.

摘要

由于具有自修复性和材料坚固性等有趣的特性,超分子材料引起了人们的极大关注,这些特性是通过非共价相互作用赋予合成材料的。在为此目的可能考虑的各种结构和合成方法中,引入广泛的多个氢键阵列允许形成超分子材料,这些超分子材料原则上可能具有自修复行为。氢键网络实现了动态非共价相互作用。通过增加分子框架内存在的氢键结合位点的数量,合适的结构单元选择可获得新型的动态自修复材料。在这里,我们描述了基于三缩脲的基序的形成,该基序可提供六个氢键结合位点,通过与异氰酸酯衍生物反应很容易获得这些氢键结合位点。通过将碳二酰肼与源自聚二甲基硅氧烷链的双异氰酸酯成分进行缩聚,已经扩展到了合成多氢键超分子材料。这些材料在机械切割表面处发生了自修复。通过适当选择形成聚合物主链的双异氰酸酯成分,可以获得具有不同柔韧性的广泛材料。

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