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利用N,N-二甲基丙酰胺作为绿色溶剂的闭环可回收聚六氢三嗪气凝胶

Closed-Loop Recyclable Polyhexahydrotriazine Aerogels Utilizing N,N-Dimethyl Lactamide as a Green Solvent.

作者信息

Wang Chang-Lin, Glišić Ivona, Chen Yi-Ru, Tomović Željko

机构信息

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

出版信息

ChemSusChem. 2025 Jul 17;18(14):e202500125. doi: 10.1002/cssc.202500125. Epub 2025 Jun 3.

Abstract

Organic aerogels, known for their lightweight, highly porous structure, and ultralow thermal conductivity, have shown great potential in thermal insulation, chemical absorption, and energy storage. However, most aerogels to date pose environmental concerns, as their permanently cross-linked scaffold makes recycling back to the original monomers virtually impossible. Additionally, the use of toxic solvents in aerogel fabrication raises further environmental and health concerns, challenging their sustainable application. Moreover, the development of next-generation organic aerogels requires the design of recyclable materials with improved mechanical properties. In response to these challenges, this study demonstrates the synthesis of chemically recyclable polyhexahydrotriazine (PHT) aerogels based on an amide containing aromatic diamine, utilizing N,N-dimethyl lactamide, a nontoxic and label-free solvent, as gelation medium. Hansen solubility parameters provide key insights into how solvent choice influences the morphology and properties of PHT aerogels. The resulting PHT aerogels exhibit low bulk density (≈63 mg cm), high porosity (≈96%), excellent thermal insulation properties (≈17 mWm K), and enhanced mechanical performance, all while being closed-loop recyclable. This work highlights the importance of solvent selection in tuning aerogel properties and demonstrates a green route for fabricating sustainable, high-performance thermal insulating materials.

摘要

有机气凝胶以其轻质、高度多孔的结构和超低的热导率而闻名,在隔热、化学吸收和能量存储方面显示出巨大潜力。然而,迄今为止,大多数气凝胶都存在环境问题,因为它们的永久交联支架使得几乎不可能回收回到原始单体。此外,在气凝胶制造过程中使用有毒溶剂引发了更多的环境和健康问题,对其可持续应用构成挑战。此外,下一代有机气凝胶的开发需要设计具有改进机械性能的可回收材料。为应对这些挑战,本研究展示了基于含酰胺的芳香二胺合成化学可回收的聚六氢三嗪(PHT)气凝胶,利用无毒且无标签的溶剂N,N - 二甲基丙酰胺作为凝胶化介质。汉森溶解度参数为溶剂选择如何影响PHT气凝胶的形态和性能提供了关键见解。所得的PHT气凝胶具有低堆积密度(≈63 mg cm)、高孔隙率(≈96%)、优异的隔热性能(≈17 mWm K)和增强的机械性能,同时具有闭环可回收性。这项工作突出了溶剂选择在调节气凝胶性能方面的重要性,并展示了一条制造可持续、高性能隔热材料的绿色途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d2b/12270357/e4ecc2ea7904/CSSC-18-e202500125-g007.jpg

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