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动态共价聚合物网络中的热潜伏基底及其新兴应用。

Thermally Latent Bases in Dynamic Covalent Polymer Networks and their Emerging Applications.

机构信息

Polymer Competence Center Leoben GmbH, Roseggerstraße 12, Leoben, 8700, Austria.

Processing of Composites Group, Montanuniversität Leoben, Otto Glöckel-Straße 2, Leoben, 8700, Austria.

出版信息

Adv Mater. 2023 Jun;35(24):e2300830. doi: 10.1002/adma.202300830. Epub 2023 Apr 27.

Abstract

A novel strategy allowing temporal control of dynamic bond exchange in covalently crosslinked polymer networks via latent transesterification catalysts is introduced. Obtained by a straightforward air- and water-tolerant synthesis, the latent catalyst is designed for an irreversible temperature-mediated release of a strong organic base. Its long-term inactivity at temperatures below 50 °C provides the unique opportunity to equip dynamic covalent networks with creep resistance and high bond-exchange rates, once activated. The presented thermally latent base catalyst is conveniently introducible in readily available building blocks and, as proof of concept, applied in a radically polymerized thiol-ene network. Light-mediated curing is used for 3D-printing functional objects, on which the possibility of spatially controlled reshaping and welding based on dynamic transesterification is illustrated. Since the catalyst is thermally activated, limitations regarding sample geometry and optical transparency do not apply, which facilitates a transfer to well-established industrial technologies. Consequently, fiber-reinforced and highly filled magneto-active thiol-ene polymer composites are fabricated by a thermal curing approach. The on-demand activation of dynamic transesterification is demonstrated by (magneto-assisted) reshaping experiments, highlighting a wide range of potential future applications offered by the presented concept.

摘要

介绍了一种通过潜伏的酯交换催化剂实现共价交联聚合物网络中动态键交换的时间控制的新策略。该潜伏催化剂通过简单的耐空气和耐水合成得到,设计用于不可逆的温度介导的强有机碱的释放。其在 50°C 以下温度下的长期不活性为动态共价网络提供了独特的机会,使其具有抗蠕变和高键交换率,一旦被激活。所提出的热潜伏碱催化剂可方便地引入现成的构建块中,并作为概念验证,应用于自由基聚合的硫醇-烯网络中。光介导的固化用于 3D 打印功能物体,展示了基于动态酯交换的空间控制重塑和焊接的可能性。由于催化剂是热激活的,因此不受样品几何形状和光学透明度的限制,这有利于向成熟的工业技术转移。因此,通过热固化方法制造纤维增强和高填充的磁活性硫醇-烯聚合物复合材料。通过(磁辅助)重塑实验证明了动态酯交换的按需激活,突出了所提出的概念提供的广泛的潜在未来应用。

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