Jiangsu Key Laboratory of Construction Materials, School of Materials Science and Engineering, Southeast University, Nanjing, 211189, P. R. China.
School of Mechanical Engineering, Purdue University, West Lafayette, IN, 47906, USA.
Adv Sci (Weinh). 2023 Jun;10(18):e2300340. doi: 10.1002/advs.202300340. Epub 2023 Apr 24.
The energy crisis has arisen as the most pressing concern and top priority for policymakers, with buildings accounting for over 40% of global energy consumption. Currently, single-function envelopes cannot satisfy energy efficiency for next-generation buildings. Designing buildings with high mechanical robustness, thermal insulation properties, and more functionalities has attracted worldwide attention. Further optimization based on bioinspired design and material efficiency improvement has been adopted as effective approaches to achieve satisfactory performance. Herein, inspired by the strong and porous cuttlefish bone, a cement aerogel through self-assembly of calcium aluminum silicate hydrate nanoparticles (C-A-S-H, a major component in cement) in a polymeric solution as a building envelop is developed. The as-synthesized cement aerogel demonstrates ultrahigh mechanical performance in terms of stiffness (315.65 MPa) and toughness (14.68 MJ m ). Specifically, the highly porous microstructure with multiscale pores inside the cement aerogel greatly inhibits heat transfer, therefore achieving ultralow thermal conductivity (0.025 W m K ). Additionally, the inorganic C-A-S-H nanoparticles in cement aerogel form a barrier against fire for good fire retardancy (limit oxygen index, LOI ≈ 46.26%, UL94-V0). The versatile cement aerogel featuring high mechanical robustness, remarkable thermal insulation, light weight, and fire retardancy is a promising candidate for practical building applications.
能源危机已经成为政策制定者最关注的首要问题,因为建筑消耗了全球 40%以上的能源。目前,单一功能的外壳无法满足下一代建筑的节能要求。设计具有高机械强度、隔热性能和更多功能的建筑引起了全球的关注。基于仿生设计和材料效率改进的进一步优化已被采用,作为实现满意性能的有效方法。受坚固多孔的墨鱼骨启发,本文通过将钙铝硅酸盐水合物纳米颗粒(水泥的主要成分 C-A-S-H)在聚合物溶液中自组装,制备了一种用于建筑外壳的水泥气凝胶。所合成的水泥气凝胶具有超高的机械性能,其刚度为 315.65 MPa,韧性为 14.68 MJ m。具体来说,水泥气凝胶的高度多孔微观结构具有内部的多尺度孔,极大地抑制了热传递,从而实现了超低的热导率(0.025 W m K)。此外,水泥气凝胶中的无机 C-A-S-H 纳米颗粒形成了阻止火焰的屏障,具有良好的阻燃性(极限氧指数 LOI ≈ 46.26%,UL94-V0)。这种多功能的水泥气凝胶具有高机械强度、卓越的隔热性能、轻质和阻燃性,是实际建筑应用的有前途的候选材料。