Water-Dispersible Ti 3C 2T z MXene Nanosheets by Acid-Free, Molten Salt Etching

Cell Press Pub Date : 2021-05-04 DOI:10.2139/ssrn.3802026
K. Arole, Jackson W. Blivin, S. Saha, Xiaofei Zhao, Dustin Holta, A. Sarmah, Huaixuan Cao, M. Radovic, J. Lutkenhaus, Micah J. Green
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引用次数: 2

Abstract

Molten-salt etching of Ti3AlC2 MAX phase offers a promising route to produce 2D Ti3C2Tz (MXene) nanosheets without the need for hazardous HF. However, molten-salt etching generally results in MXene clays that are not fully exfoliated or water-dispersible, thus preventing nanosheet processing. This occurs because molten-salt etching generally results in a high level of -F terminal functionalities that render the MXene clay hydrophobic. Here, we demonstrate a molten salt (SnF2) etching method that, for the first time, produces water-dispersible Ti3C2Tz nanosheets without the need for HF. In molten salt etching, SnF2 diffuses between the layers during etching to form AlF3 and Sn as byproducts; Sn spheres form internally and separate the layers. The stable, aqueous Ti3C2Tz dispersion yields a ζ potential of -31.7 mV, because of -OH terminal groups introduced by KOH washing. X-ray diffraction and electron microscopy confirm the formation of Ti3C2Tz etched clay with substantial d-spacing as compared to the clay from a traditional HF-process. This work is the first to use molten salt etching to successfully prepare colloidally stable aqueous dispersions of Ti3C2Tz nanosheets. The Ti3C2Tz nanosheet film and clay produced by this method also show excellent specific and areal capacitance and conductivity.
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无酸熔盐刻蚀制备水分散Ti - 3C - 2tz - MXene纳米片
熔融盐蚀刻Ti3AlC2 MAX相为制备二维Ti3C2Tz (MXene)纳米片提供了一条很有前途的途径,无需使用有害的HF。然而,熔融盐蚀刻通常会导致MXene粘土不能完全剥落或水分散,从而阻碍纳米片的加工。这是因为熔盐蚀刻通常会导致高水平的-F末端功能,从而使MXene粘土疏水。在这里,我们展示了一种熔盐(SnF2)蚀刻方法,首次在不需要HF的情况下产生水分散的Ti3C2Tz纳米片。在熔盐蚀刻中,SnF2在蚀刻过程中在层间扩散形成副产物AlF3和Sn;锡球在内部形成并将各层分开。稳定的水相Ti3C2Tz分散体的ζ电位为-31.7 mV,这是因为KOH洗涤引入了-OH端基。x射线衍射和电子显微镜证实了Ti3C2Tz蚀刻粘土的形成与传统hf工艺的粘土相比具有较大的d-间距。这项工作是首次使用熔盐蚀刻技术成功制备出具有胶体稳定性的Ti3C2Tz纳米片水分散体。用该方法制备的Ti3C2Tz纳米片薄膜和粘土也表现出优异的比电容和比面积电容和电导率。
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