Du Junjie, Fu Gangwen, Xu Xi, Elshahawy Abdelnaby M, Guan Cao
Frontiers Science Center for Flexible Electronics and MIIT Key Laboratory of Flexible Electronics (KLoFE), Institute of Flexible Electronics, Northwestern Polytechnical University, Xi'an, 710072, China.
Key Laboratory of Flexible Electronics of Zhejiang Province, Ningbo Institute of Northwestern Polytechnical University, 218 Qingyi Road, Ningbo, 315103, China.
Small. 2023 May;19(19):e2207833. doi: 10.1002/smll.202207833. Epub 2023 Feb 9.
Advanced functional materials with fascinating properties and extended structural design have greatly broadened their applications. Metamaterials, exhibiting unprecedented physical properties (mechanical, electromagnetic, acoustic, etc.), are considered frontiers of physics, material science, and engineering. With the emerging 3D printing technology, the manufacturing of metamaterials becomes much more convenient. Graphene, due to its superior properties such as large surface area, superior electrical/thermal conductivity, and outstanding mechanical properties, shows promising applications to add multi-functionality into existing metamaterials for various applications. In this review, the aim is to outline the latest developments and applications of 3D printed graphene-based metamaterials. The structure design of different types of metamaterials and the fabrication strategies for 3D printed graphene-based materials are first reviewed. Then the representative explorations of 3D printed graphene-based metamaterials and multi-functionality that can be introduced with such a combination are further discussed. Subsequently, challenges and opportunities are provided, seeking to point out future directions of 3D printed graphene-based metamaterials.
具有迷人特性和扩展结构设计的先进功能材料极大地拓宽了它们的应用范围。超材料展现出前所未有的物理特性(机械、电磁、声学等),被视为物理学、材料科学和工程学的前沿领域。随着新兴的3D打印技术的出现,超材料的制造变得更加便捷。石墨烯由于其诸如大表面积、优异的电导率/热导率以及出色的机械性能等优越特性,在为各种应用的现有超材料添加多功能性方面显示出广阔的应用前景。在这篇综述中,目的是概述3D打印石墨烯基超材料的最新发展和应用。首先回顾了不同类型超材料的结构设计以及3D打印石墨烯基材料的制造策略。然后进一步讨论了3D打印石墨烯基超材料的代表性探索以及通过这种组合可以引入的多功能性。随后,提出了挑战和机遇,旨在指出3D打印石墨烯基超材料的未来发展方向。