MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Key Laboratory of Adsorption and Separation Materials & Technologies of Zhejiang Province, Zhejiang University, 38 Zheda Road, Hangzhou, 310027, P. R. China.
Arti McFerrin Department of Chemical Engineering and Department of Materials Science and Engineering, Texas A&M University, College Station, TX, 77843, USA.
Adv Mater. 2017 Apr;29(14). doi: 10.1002/adma.201606794. Epub 2017 Feb 24.
Two-dimensional colloidal nanomaterials are running into renaissance after the enlightening researches of graphene. Macroscopic one-dimensional fiber is an optimal ordered structural form to express the in-plane merits of 2D nanomaterials, and the formation of liquid crystals (LCs) allows the creation of continuous fibers. In the correlated system from LCs to fibers, understanding their macroscopic organizing behavior and transforming them into new solid fibers is greatly significant for applications. Herein, we retrospect the history of 2D colloids and discuss about the concept of 2D nanomaterial fibers in the context of LCs, elaborating the motivation, principle and possible strategies of fabrication. Then we highlight the creation, development and typical applications of graphene fibers. Additionally, the latest advances of other 2D nanomaterial fibers are also summarized. Finally, conclusions, challenges and perspectives are provided to show great expectations of better and more fibrous materials of 2D nanomaterials. This review gives a comprehensive retrospect of the past century-long effort about the whole development of 2D colloids, and plots a clear roadmap - "lamellar solid - LCs - macroscopic fibers - flexible devices", which will certainly open a new era of structural-multifunctional application for the conventional 2D colloids.
二维胶体纳米材料在石墨烯的启发研究之后迎来了复兴。宏观的一维纤维是表达二维纳米材料面内优点的最佳有序结构形式,而液晶(LCs)的形成允许连续纤维的形成。在从 LCs 到纤维的相关体系中,理解它们的宏观组织行为并将其转化为新的固态纤维对于应用具有重要意义。在这里,我们回顾了二维胶体的历史,并在 LCs 的背景下讨论了二维纳米材料纤维的概念,详细阐述了制造的动机、原理和可能的策略。然后,我们重点介绍了石墨烯纤维的创造、发展和典型应用。此外,还总结了其他二维纳米材料纤维的最新进展。最后,提供了结论、挑战和展望,以展示对更好、更多纤维状二维纳米材料的期望。这篇综述全面回顾了过去一个多世纪二维胶体的整个发展历程,并绘制了一条清晰的路线图——“层状固体-LCs-宏观纤维-柔性器件”,这必将为传统二维胶体开辟结构-多功能应用的新时代。