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具有分级孔结构用于隔热的坚固、阻燃和防水木材/聚酰亚胺复合气凝胶

Robust, Fire-Retardant, and Water-Resistant Wood/Polyimide Composite Aerogels with a Hierarchical Pore Structure for Thermal Insulation.

作者信息

Zhao Lu, Chen Junyong, Pan Defang, Hou Yan

机构信息

School of Chemistry and Chemical Engineering, Qilu Normal University, Jinan 250200, China.

出版信息

Gels. 2023 Jun 6;9(6):467. doi: 10.3390/gels9060467.

Abstract

The use of energy-saving materials is an effective strategy for decreasing energy consumption and carbon emission. Wood is a type of biomass material with a natural hierarchical structure, which results in its high thermal insulation. It has been widely used in construction. However, developing wood-based materials without flammability and dimensional instability is still a challenge. Herein, we developed a wood/polyimide composite aerogel with a well-preserved hierarchical pore structure and dense hydrogen bonds inside, resulting in its excellent chemical compatibility and strong interfacial interactions between its two components. This novel wood-based composite was fabricated by removing most hemicellulose and lignin from natural wood, followed by the fast impregnation using an 'in situ gel' process. The introduction of polyimide into delignified wood substantially improved its mechanical properties, with the compression resistance being improved by over five times. Notably, the thermal conductivity coefficient of the developed composite was approximately half that of natural wood. Furthermore, the composite exhibited excellent fire-retardancy, hydrophobicity, thermal insulation, and mechanical properties. This study provides a novel method for wood modification, which not only aids interfacial compatibility between wood and polyimide but also retains the properties of the two components. The developed composite can effectively reduce energy consumption, making it promising for practical and complex thermal insulation applications.

摘要

使用节能材料是降低能源消耗和碳排放的有效策略。木材是一种具有天然分级结构的生物质材料,这使其具有高隔热性。它已被广泛应用于建筑领域。然而,开发出无易燃性和尺寸不稳定性的木质基材料仍然是一项挑战。在此,我们开发了一种木材/聚酰亚胺复合气凝胶,其内部具有保存完好的分级孔隙结构和密集的氢键,这使其具有优异的化学相容性以及两种组分之间强大的界面相互作用。这种新型木质基复合材料是通过从天然木材中去除大部分半纤维素和木质素,然后采用“原位凝胶”工艺进行快速浸渍制备而成。将聚酰亚胺引入脱木质素木材中显著改善了其机械性能,抗压强度提高了五倍多。值得注意的是,所开发复合材料的导热系数约为天然木材的一半。此外,该复合材料还表现出优异的阻燃性、疏水性、隔热性和机械性能。本研究提供了一种木材改性的新方法,不仅有助于木材与聚酰亚胺之间的界面相容性,还保留了两种组分的性能。所开发的复合材料能够有效降低能源消耗,使其在实际和复杂的隔热应用中具有广阔前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c71/10298113/20065c8260b8/gels-09-00467-g001.jpg

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