Gurzęda Bartosz, Boulanger Nicolas, Nordenström Andreas, Dejoie Catherine, Talyzin Alexandr V
Department of Physics, Umeå University, Umeå, S-90187, Sweden.
European Synchrotron Radiation Facility (ESRF), ID22 Beamline, 71 Avenue des Martyrs, Grenoble, 38000, France.
Adv Sci (Weinh). 2024 Dec;11(48):e2408448. doi: 10.1002/advs.202408448. Epub 2024 Oct 30.
Many applications are suggested for Ti-MXene motivating strong interest in studies of TiCT synthesis by solution-based methods. However, so far only ex situ studies of the synthesis are performed, mostly due to the difficulty of handling HF-based solutions. Here the first time-resolved in situ synchrotron radiation X-ray Diffraction study of MXene synthesis performed using a plastic capillary-size reaction cell directly in HF solution is reported. This study provides the first report on the structure of "pristine MXene" formed by TiAlC etching with LiF+HCl. The term "pristine" refers to the MXene structure found directly in HF solution. By comparing the interlayer distances of pristine MXene (≈13.5 Å), solvent-free Li-intercalated MXene (≈12.2 Å), and Li-free MXene (≈10.7 Å), it can be concluded that the width of "slit pores" formed by terminated MX layers during the Al etching does not exceed ≈3 Å. The width of these slit pores is a key factor for HF etching of Al within the interlayers. This space constraint explains the slow kinetics of MXene formation in HF-based synthesis methods. No intermediate phases are observed, suggesting that the crystalline MXene phase is formed by the simultaneous etching of Al and termination of TiC layers.
钛基MXene有许多应用被提出,这激发了人们对通过溶液法合成TiCT的研究产生浓厚兴趣。然而,到目前为止,对该合成过程仅进行了非原位研究,主要是因为处理基于HF的溶液存在困难。本文报道了首次使用塑料毛细管尺寸的反应池直接在HF溶液中进行的MXene合成的时间分辨原位同步辐射X射线衍射研究。这项研究首次报道了通过LiF+HCl蚀刻TiAlC形成的“原始MXene”的结构。术语“原始”指的是直接在HF溶液中发现的MXene结构。通过比较原始MXene(≈13.5 Å)、无溶剂锂插层MXene(≈12.2 Å)和无锂MXene(≈10.7 Å)的层间距,可以得出结论,在Al蚀刻过程中由终止的MX层形成的“狭缝孔”宽度不超过≈3 Å。这些狭缝孔的宽度是HF蚀刻层间Al的关键因素。这种空间限制解释了基于HF的合成方法中MXene形成的缓慢动力学。未观察到中间相,这表明结晶MXene相是由Al的同时蚀刻和TiC层的终止形成的。