Zhao Xinne, Zhang Panpan, Chen Yuting, Su Zhiqiang, Wei Gang
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, 100029 Beijing, China.
Nanoscale. 2015 Mar 12;7(12):5080-93. doi: 10.1039/c5nr00084j.
The preparation and applications of graphene (G)-based materials are attracting increasing interests due to their unique electronic, optical, magnetic, thermal, and mechanical properties. Compared to G-based hybrid and composite materials, G-based inorganic hybrid membrane (GIHM) offers enormous advantages ascribed to their facile synthesis, planar two-dimensional multilayer structure, high specific surface area, and mechanical stability, as well as their unique optical and mechanical properties. In this review, we report the recent advances in the technical fabrication and structure-specific applications of GIHMs with desirable thickness and compositions. In addition, the advantages and disadvantages of the methods utilized for creating GIHMs are discussed in detail. Finally, the potential applications and key challenges of GIHMs for future technical applications are mentioned.
基于石墨烯(G)的材料因其独特的电学、光学、磁学、热学和力学性能,其制备与应用正吸引着越来越多的关注。与基于G的杂化材料和复合材料相比,基于G的无机杂化膜(GIHM)具有诸多优势,这归因于其易于合成、平面二维多层结构、高比表面积、机械稳定性以及独特的光学和力学性能。在本综述中,我们报告了具有理想厚度和组成的GIHM在技术制造和特定结构应用方面的最新进展。此外,还详细讨论了用于制备GIHM的方法的优缺点。最后,提及了GIHM在未来技术应用中的潜在应用和关键挑战。