Yang Le, Zhang Hong, Wang Chang, Jiao Yunhong, Pang Xiuyan, Xu Jianzhong, Ma Haiyun
College of Chemistry and Materials Science, Hebei University, Baoding 071002, China; The Flame Retardant Material and Processing Technology Engineering Research Center of Hebei Province, Baoding 071002, China.
College of Chemistry and Materials Science, Hebei University, Baoding 071002, China; The Flame Retardant Material and Processing Technology Engineering Research Center of Hebei Province, Baoding 071002, China.
J Colloid Interface Sci. 2024 Oct 15;672:618-630. doi: 10.1016/j.jcis.2024.06.048. Epub 2024 Jun 6.
The construction of supramolecular aerogels still faces great challenges. Herein, we present a novel bio-based supramolecular aerogel derived from G-Quadruplex self-assembly of guanosine (G), boric acid (B) and sodium alginate (SA) and the obtained GBS aerogels exhibit superior flame-retardant and thermal insulating properties. The entire process involves environmentally friendly aqueous solvents and freeze-drying. Benefiting from the supramolecular self-assembly and interpenetrating dual network structures, GBS aerogels exhibit unique structures and sufficient self-supporting capabilities. The resulting GBS aerogels exhibit overall low densities (36.5-52.4 mg/cm), and high porosities (>95 %). Moreover, GBS aerogels also illustrate excellent flame retardant and thermal insulating properties. With an oxygen index of 47.0-51.1 %, it can easily achieve a V-0 rating and low heat, smoke release during combustion. This work demonstrates the preparation of intrinsic flame-retardant aerogels derived from supramolecular self-assembly and dual cross-linking strategies, and is expected to provide an idea for the realization and application of novel supramolecular aerogel materials.
超分子气凝胶的构建仍然面临巨大挑战。在此,我们展示了一种新型的生物基超分子气凝胶,它由鸟苷(G)、硼酸(B)和海藻酸钠(SA)的G-四链体自组装而成,所获得的GBS气凝胶具有优异的阻燃和隔热性能。整个过程涉及环境友好的水性溶剂和冷冻干燥。受益于超分子自组装和互穿双网络结构,GBS气凝胶展现出独特的结构和足够的自支撑能力。所得的GBS气凝胶总体密度较低(36.5 - 52.4毫克/立方厘米),孔隙率较高(>95%)。此外,GBS气凝胶还表现出优异的阻燃和隔热性能。其氧指数为47.0 - 51.1%,在燃烧过程中能够轻松达到V - 0等级,且热量和烟雾释放量低。这项工作展示了通过超分子自组装和双交联策略制备本征阻燃气凝胶的方法,有望为新型超分子气凝胶材料的实现和应用提供思路。