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无添加剂的MXene液晶与纤维

Additive-Free MXene Liquid Crystals and Fibers.

作者信息

Zhang Jizhen, Uzun Simge, Seyedin Shayan, Lynch Peter A, Akuzum Bilen, Wang Zhiyu, Qin Si, Alhabeb Mohamed, Shuck Christopher E, Lei Weiwei, Kumbur E Caglan, Yang Wenrong, Wang Xungai, Dion Genevieve, Razal Joselito M, Gogotsi Yury

机构信息

Institute for Frontier Materials, Deakin University, Geelong, Victoria 3216, Australia.

A. J. Drexel Nanomaterials Institute, Department of Materials Science and Engineering, Drexel University, Philadelphia, Pennsylvania 19104, United States.

出版信息

ACS Cent Sci. 2020 Feb 26;6(2):254-265. doi: 10.1021/acscentsci.9b01217. Epub 2020 Feb 6.

Abstract

The discovery of liquid crystalline (LC) phases in dispersions of two-dimensional (2D) materials has enabled the development of macroscopically aligned three-dimensional (3D) macrostructures. Here, we report the first experimental observation of self-assembled LC phases in aqueous TiCT MXene inks without using LC additives, binders, or stabilizing agents. We show that the transition concentration from the isotropic to nematic phase is influenced by the aspect ratio of MXene flakes. The formation of the nematic LC phase makes it possible to produce fibers from MXenes using a wet-spinning method. By changing the TiCT flake size in the ink formulation, coagulation bath, and spinning parameters, we control the morphology of the MXene fibers. The wet-spun TiCT fibers show a high electrical conductivity of ∼7750 S cm, surpassing existing nanomaterial-based fibers. A high volumetric capacitance of ∼1265 F cm makes TiCT fibers promising for fiber-shaped supercapacitor devices. We also show that TiCT fibers can be used as heaters. Notably, the nematic LC phase can be achieved in other MXenes (MoTiCT and TiCT ) and in various organic solvents, suggesting the widespread LC behavior of MXene inks.

摘要

二维(2D)材料分散体中液晶(LC)相的发现推动了宏观排列的三维(3D)宏观结构的发展。在此,我们报告了在不使用LC添加剂、粘合剂或稳定剂的情况下,首次在水性TiCT MXene油墨中观察到自组装LC相。我们表明,从各向同性相到向列相的转变浓度受MXene薄片的纵横比影响。向列LC相的形成使得使用湿纺法从MXene生产纤维成为可能。通过改变油墨配方、凝固浴和纺丝参数中的TiCT薄片尺寸,我们控制了MXene纤维的形态。湿纺TiCT纤维显示出约7750 S cm的高电导率,超过了现有的基于纳米材料的纤维。约1265 F cm的高体积电容使TiCT纤维有望用于纤维状超级电容器器件。我们还表明,TiCT纤维可用作加热器。值得注意的是,在其他MXene(MoTiCT和TiCT)以及各种有机溶剂中都可以实现向列LC相,这表明MXene油墨具有广泛的LC行为。

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