National Creative Research Initiative Center for Multi-Dimensional Directed Nanoscale Assembly, Department of Materials Science & Engineering, KAIST, Daejeon, 34141, Republic of Korea.
Adv Mater. 2016 Apr;28(16):3045-68. doi: 10.1002/adma.201505122. Epub 2016 Mar 1.
The discovery and relevant research progress in graphene oxide liquid crystals (GOLCs), the latest class of 2D nanomaterials exhibiting colloidal liquid crystallinity arising from the intrinsic disc-like shape anisotropy, is highlighted. GOLC has conferred a versatile platform for the development of novel properties and applications based on the facile controllability of molecular scale alignment. The first part of this review offers a brief introduction to LCs, including the theoretical background. Particular attention has been paid to the different types of LC phases that have been reported thus far, such as nematic, lamellar and chiral phases. Several key parameters governing the ultimate stability of GOLC behavior, including pH and ionic strength of aqueous dispersions are highlighted. In a relatively short span of time since its discovery, GOLCs have proved their remarkable potential in a broad spectrum of applications, including highly oriented wet-spun fibers, self-assembled nanocomposites, and architectures for energy storage devices. The second part of this review is devoted to an exclusive overview of the relevant applications. Finally, an outlook is provided into this newly emerging research field, where two well established scientific communities for carbon nanomaterials and liquid crystals are ideally merged.
氧化石墨烯液晶(GOLC)的发现及相关研究进展得到了强调,这是最新一类具有胶体液晶性的二维纳米材料,源于其固有盘状形状各向异性。GOLC 为基于分子尺度取向的易控性开发新型性能和应用提供了一个通用平台。本综述的第一部分简要介绍了液晶,包括理论背景。特别关注迄今为止报道的不同类型的液晶相,如向列相、层状相和手性相。几个关键参数控制 GOLC 行为的最终稳定性,包括水相分散体的 pH 值和离子强度,都得到了强调。自发现以来,在相对较短的时间内,GOLC 在广泛的应用中证明了其显著的潜力,包括高度取向的湿法纺丝纤维、自组装纳米复合材料和储能装置的结构。本综述的第二部分专门概述了相关应用。最后,对这个新兴研究领域进行了展望,其中两个成熟的碳纳米材料和液晶科学社区理想地融合在一起。