Ding Meichun, Zhao Demin, Wei Rui, Duan Zhenying, Zhao Yuxi, Li Zeyang, Lin Tianhao, Li Chenwei
School of Chemistry and Pharmaceutical Engineering Shandong First Medical University & Shandong Academy of Medical Sciences Jinan Shandong China.
Medical Science and Technology Innovation Center Shandong First Medical University & Shandong Academy of Medical Sciences Jinan Shandong China.
Exploration (Beijing). 2023 Oct 17;4(2):20230057. doi: 10.1002/EXP.20230057. eCollection 2024 Apr.
3D graphene porous materials (3GPM), which have low density, large porosity, excellent compressibility, high conductivity, hold huge promise for a wide range of applications. Nevertheless, most 3GPM have brittle and weak network structures, which limits their widespread use. Therefore, the preparation of a robust and elastic graphene porous network is critical for the functionalization of 3GPM. Herein, the recent research of 3GPM with excellent mechanical properties are summarized and the focus is on the effect factors that affect the mechanical properties of 3GPM. Moreover, the applications of elastic 3GPM in various fields, such as adsorption, energy storage, solar steam generation, sensors, flexible electronics, and electromagnetic wave shielding are comprehensively reviewed. At last, the new challenges and perspective for fabrication and functionalization of robust and elastic 3GPM are outlined. It is expected that the perspective will inspire more new ideas in preparation and functionalization of 3GPM.
三维石墨烯多孔材料(3GPM)具有低密度、高孔隙率、优异的压缩性和高导电性,在广泛的应用领域有着巨大的潜力。然而,大多数3GPM具有脆性和薄弱的网络结构,这限制了它们的广泛应用。因此,制备坚固且有弹性的石墨烯多孔网络对于3GPM的功能化至关重要。在此,总结了具有优异力学性能的3GPM的近期研究,并重点关注影响3GPM力学性能的因素。此外,还全面综述了弹性3GPM在吸附、储能、太阳能蒸汽产生、传感器、柔性电子和电磁波屏蔽等各个领域的应用。最后,概述了制备坚固且有弹性的3GPM及其功能化面临的新挑战和前景。预计这一前景将在3GPM的制备和功能化方面激发更多新的思路。