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A broadly applicable cross-linker for aliphatic polymers containing C-H bonds

机译:广泛适用于含有C-H键的脂族聚合物的交联剂

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Addition of molecular cross-links to polymers increases mechanical strength and improves corrosion resistance. However, it remains challenging to install cross-links in low-functionality macromolecules in a well-controlled manner. Typically, high-energy processes are required to generate highly reactive radicals in situ, allowing only limited control over the degree and type of cross-link. We rationally designed a bis-diazirine molecule whose decomposition into carbenes under mild and controllable conditions enables the cross-linking of essentially any organic polymer through double C-H activation. The utility of this molecule as a cross-linker was demonstrated for several diverse polymer substrates (including polypropylene, a low-functionality polymer of long-standing challenge to the field) and in applications including adhesion of low-surface-energy materials and the strengthening of polyethylene fabric.
机译:向聚合物中添加分子交联键可提高机械强度并改善耐腐蚀性。然而,以良好控制的方式在低功能性大分子中安装交联仍然具有挑战性。通常,需要高能过程以就地产生高反应性自由基,从而仅对交联的程度和类型进行有限的控制。我们合理地设计了一种双重氮分子,该分子在温和且可控的条件下分解为碳烯,可以通过双C-H活化使基本上任何有机聚合物发生交联。该分子作为交联剂的用途已在多种多样的聚合物基材(包括聚丙烯,该领域长期面临挑战的低官能度聚合物)以及包括低表面能材料的粘合性和增强性的应用中得到了证明。聚乙烯织物。

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