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闭环可回收且热超绝缘聚六氢三嗪气凝胶的一步合成法

One-Step Synthesis of Closed-Loop Recyclable and Thermally Superinsulating Polyhexahydrotriazine Aerogels.

作者信息

Wang Chang-Lin, Chen Yi-Ru, Eisenreich Fabian, Tomović Željko

机构信息

Polymer Performance Materials Group, Department of Chemical Engineering and Chemistry and Institute for Complex Molecular Systems (ICMS), Eindhoven University of Technology, Eindhoven, 5600 MB, The Netherlands.

出版信息

Adv Mater. 2025 Jan;37(1):e2412502. doi: 10.1002/adma.202412502. Epub 2024 Nov 4.

Abstract

Organic aerogels are an advanced class of materials renowned for their ultralow thermal conductivity and highly porous architecture, making them ideal for applications in thermal insulation, catalysis, and chemical absorption. However, these polymeric networks pose environmental concerns as their permanently crosslinked scaffold makes recycling back to the original monomers virtually impossible. To tackle this issue and develop next-generation organic aerogel, a set of polyhexahydrotriazine (PHT) aerogels specifically designed for closed-loop chemical recycling are prepared. Remarkably, these innovative materials can selectively be synthesized in a one-step condensation reaction using commercially available aromatic amines. They showcase outstanding thermally insulating performance, along with strong mechanical performance, pronounced thermal stability, and intrinsic hydrophobicity, all achieved without the need for additional modifications. More importantly, these aerogels exhibit quantitative depolymerization under acidic aqueous conditions, achieving high yields and purities of the recovered monomers. The successful preparation of fresh organic aerogels from recycled monomers with nearly identical material properties underscores the efficiency and reliability of this recycling process. The facile one-step synthesis process, combined with the high-performance properties and excellent recyclability of these PHT aerogels, accelerates the advancement of sustainable thermally superinsulating materials.

摘要

有机气凝胶是一类先进材料,以其超低的热导率和高度多孔的结构而闻名,使其成为热绝缘、催化和化学吸收应用的理想材料。然而,这些聚合物网络引发了环境问题,因为它们的永久交联支架几乎不可能再循环回原始单体。为了解决这个问题并开发下一代有机气凝胶,制备了一组专门为闭环化学循环设计的聚六氢三嗪(PHT)气凝胶。值得注意的是,这些创新材料可以使用市售芳香胺在一步缩合反应中选择性地合成。它们展现出出色的隔热性能,以及强大的机械性能、显著的热稳定性和固有疏水性,所有这些都无需额外改性即可实现。更重要的是,这些气凝胶在酸性水溶液条件下表现出定量解聚,回收单体的产率和纯度很高。用具有几乎相同材料性能的回收单体成功制备新鲜有机气凝胶,突出了这种回收过程的效率和可靠性。这些PHT气凝胶简便的一步合成过程,结合其高性能特性和出色的可回收性,加速了可持续热超绝缘材料的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/451a/11707557/a61c1c2d8d62/ADMA-37-2412502-g004.jpg

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