Wang Zhijian, Li Rong, Liu He, Liu Xingmin, Zheng Feng, Yu Chen
College of Mechanical and Electrical Engineering, Shenyang Aerospace University, Shenyang 110136, People's Republic of China.
CNPC Bohai Drilling Engineering Company Ltd., Tianjin 300457, People's Republic of China.
Nanotechnology. 2024 Jan 11;35(13). doi: 10.1088/1361-6528/ad183d.
In aerospace and downhole exploration, materials must function reliably in challenging environments characterized by high temperatures and complex electromagnetic (EM) interference. Graphene oxide (GO) aerogels are promising materials for thermal insulation, and the incorporation of silicon carbide nanowires can enhance their mechanical properties, thermal stability and EM absorption efficiency. In this context, citric acid acts as both a cross-linking and reducing agent, facilitating the formation of a composite aerogel comprising GO and SiC nanowires (rGO/m-SiC NWs). Compared with GO aerogels, the representative composite aerogel sample rGS4 demonstrated significantly improved mechanical properties (yield strength increased by 0.031 MPa), outstanding thermal stability (ability to withstand temperatures up to 800 °C) and remarkably low thermal conductivity (measuring just 0.061 W mK). Importantly, the composite aerogels displayed impressive EM absorption characteristics, including a slim profile (2.5 mm), high absorption capacity (-42.23 dB) and an exceptionally broad effective absorption bandwidth (7.47 GHz). Notably, the specific effective absorption bandwidth of composite aerogels exceeded that of similar composite materials. In conclusion, rGO/m-SiC NWs exhibited exceptional mechanical properties, remarkable thermal stability, efficient thermal insulation and outstanding microwave absorption capabilities. These findings highlight their potential for use in high-temperature and electromagnetically challenging environments.
在航空航天和井下勘探领域,材料必须在高温和复杂电磁干扰等具有挑战性的环境中可靠运行。氧化石墨烯(GO)气凝胶是很有前途的隔热材料,而碳化硅纳米线的加入可以提高其机械性能、热稳定性和电磁吸收效率。在此背景下,柠檬酸既作为交联剂又作为还原剂,有助于形成一种由GO和SiC纳米线组成的复合气凝胶(rGO/m-SiC NWs)。与GO气凝胶相比,代表性的复合气凝胶样品rGS4表现出显著改善的机械性能(屈服强度提高了0.031 MPa)、出色的热稳定性(能够承受高达800°C的温度)和极低的热导率(仅为0.061 W mK)。重要的是,复合气凝胶展现出令人印象深刻的电磁吸收特性,包括超薄外形(2.5毫米)、高吸收能力(-42.23 dB)和极宽的有效吸收带宽(7.47 GHz)。值得注意的是,复合气凝胶的比有效吸收带宽超过了类似复合材料。总之,rGO/m-SiC NWs表现出卓越的机械性能、显著的热稳定性、高效的隔热性能和出色的微波吸收能力。这些发现凸显了它们在高温和电磁环境具有挑战性的环境中应用的潜力。