Zhang Lianming, Lei Yu, He Peng, Wu Hao, Guo Lei, Wei Gang
Engineering Research Center of Green Process, School of Resources and Environmental Engineering, Shandong Agriculture and Engineering University, Jinan 250100, China.
Institute of Biomedical Engineering, College of Life Science, Qingdao University, Qingdao 266071, China.
Nanomaterials (Basel). 2022 Sep 13;12(18):3172. doi: 10.3390/nano12183172.
Carbon material-based aerogels (CMBAs) have three-dimensional porous structure, high specific surface area, low density, high thermal stability, good electric conductivity, and abundant surface-active sites, and, therefore, have shown great application potential in energy storage, environmental remediation, electrochemical catalysis, biomedicine, analytical science, electronic devices, and others. In this work, we present recent progress on the fabrication, structural design, functional tailoring, and gas adsorption applications of CMBAs, which are prepared by precursor materials, such as polymer-derived carbon, carbon nanotubes, carbon nanofibers, graphene, graphene-like carbides, fullerenes, and carbon dots. To achieve this aim, first we introduce the fabrication methods of various aerogels, and, then, discuss the strategies for regulating the structures of CMBAs by adjusting the porosity and periodicity. In addition, the hybridization of CMBAs with other nanomaterials for enhanced properties and functions is demonstrated and discussed through presenting the synthesis processes of various CMBAs. After that, the adsorption performances and mechanisms of functional CMBAs towards CO, CO, HS, H, and organic gases are analyzed in detail. Finally, we provide our own viewpoints on the possible development directions and prospects of this promising research topic. We believe this work is valuable for readers to understand the synthesis methods and functional tailoring of CMBAs, and, meanwhile, to promote the applications of CMBAs in environmental analysis and safety monitoring of harmful gases.
基于碳材料的气凝胶(CMBAs)具有三维多孔结构、高比表面积、低密度、高热稳定性、良好的导电性以及丰富的表面活性位点,因此在能量存储、环境修复、电化学催化、生物医药、分析科学、电子器件等领域展现出了巨大的应用潜力。在这项工作中,我们介绍了由聚合物衍生碳、碳纳米管、碳纳米纤维、石墨烯、类石墨烯碳化物、富勒烯和碳点等前驱体材料制备的CMBAs在制备、结构设计、功能剪裁及气体吸附应用方面的最新进展。为实现这一目标,我们首先介绍了各种气凝胶的制备方法,然后讨论了通过调节孔隙率和周期性来调控CMBAs结构的策略。此外,通过展示各种CMBAs的合成过程,论证并讨论了CMBAs与其他纳米材料杂化以增强性能和功能的情况。之后,详细分析了功能性CMBAs对CO、CO、HS、H及有机气体的吸附性能和吸附机理。最后,我们对这一有前景的研究课题可能的发展方向和前景提出了自己的观点。我们相信这项工作对于读者理解CMBAs的合成方法和功能剪裁,同时推动CMBAs在环境分析和有害气体安全监测中的应用具有重要价值。