Green Preparation and Recycling Laboratory of Functional Polymeric Materials, College of Science, Xihua University, Chengdu, Sichuan 610039, China; Food Microbiology Key Laboratory of Sichuan Province, School of Food and Bioengineering, Xihua University, Chengdu, Sichuan 610039, China.
Green Preparation and Recycling Laboratory of Functional Polymeric Materials, College of Science, Xihua University, Chengdu, Sichuan 610039, China.
Int J Biol Macromol. 2024 Jul;273(Pt 2):132811. doi: 10.1016/j.ijbiomac.2024.132811. Epub 2024 May 31.
Atmospheric drying method for fabricating aerogels is considered the most promising way for casting aerogels on a large scale. However, the organic solvent exchange, remaining environmental pollution risk, is a crucial step in mitigating the impact of surface tension during the atmospheric drying process, especially for wet gel formed through the alkoxy-derived sol-gel process, such as melamine-formaldehyde resin (MF) aerogel. Herein, a tough polymer-assisted in situ polymerization was proposed to fabricate MF resin aerogel with a combination of mechanical toughness and strength, enabling it to withstand the capillary force during water evaporation. The monolithic MF resin aerogel through the sol-gel method can be directly prepared without additional network strengthening or organic solvent exchange. The resulting MF resin aerogel exhibits a homogeneous as well as hierarchical structure with macropores and mesopores (~6 μm and ~5 nm), high compressive modulus of 31.8 MPa, self-extinguishing property, and high-temperature thermal insulation with 97 % heat decrease for butane flame combustion. This work presents a straightforward and environmentally friendly method for fabricating MF resin aerogels with nanostructures and excellent performance in open conditions, exhibiting various applications.
大气干燥法被认为是大规模铸造气凝胶最有前途的方法。然而,有机溶剂交换仍然存在环境污染风险,这是减轻大气干燥过程中表面张力影响的关键步骤,特别是对于通过烷氧基衍生溶胶-凝胶工艺形成的湿凝胶,例如三聚氰胺-甲醛树脂(MF)气凝胶。在此,提出了一种坚韧的聚合物辅助原位聚合方法,以制备具有机械韧性和强度的 MF 树脂气凝胶,使其能够承受水蒸发过程中的毛细力。通过溶胶-凝胶法直接制备整块 MF 树脂气凝胶,无需额外的网络强化或有机溶剂交换。所得到的 MF 树脂气凝胶具有均匀的分级结构,具有大孔和介孔(6μm 和5nm),压缩模量高达 31.8MPa,自熄灭性能,以及高温隔热性能,丁烷火焰燃烧时热量减少 97%。这项工作提出了一种简单环保的方法,可在开放条件下制备具有纳米结构和优异性能的 MF 树脂气凝胶,展示了各种应用。