Hu Tao, Yang Jinxing, Li Wu, Wang Xiaohui, Li Chang Ming
Institute of Materials Science and Devices, Suzhou University of Science and Technology, Suzhou 215009, China and Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang 110016, China.
Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang 110016, China.
Phys Chem Chem Phys. 2020 Jan 28;22(4):2115-2121. doi: 10.1039/c9cp05412j. Epub 2020 Jan 6.
MXenes represent a family of surface-functionalized two-dimensional (2D) carbides and nitrides with potential applications in the field of flexible electronics, which rely on their elasticity and flexibility. However, the knowledge on such aspects is rather limited. Here, taking the four most typical MXenes, namely, TiCT, TiCT, NbCT and NbCT (T = O, OH and F) as examples, we evaluate their intrinsic in-plane stiffness and out-of-plane rigidity at the nanoscale with respect to their functional groups, chemical components and thickness by first-principles calculations. We find that both the in-plane stiffness (C) and out-of-plane bending rigidity (D) of MXenes are highly dependent on the thickness of MX and the surface functional groups. Specifically, the thickness and surface functionalization increase C and D significantly. The Foppl-von Karman numbers per area (C/D), as the flexibility descriptor, of MXenes are comparable with that of the MoS monolayer, indicating MXenes as a class of strong yet bendable materials. The effective thickness, the critical parameter bridging C and D, of MXenes is determined to be only two-thirds of the average layer spacing. This study provides a fundamental basis for quantifying the rigidity of MXenes at the nanoscale.
MXenes是一类表面功能化的二维碳化物和氮化物,在柔性电子领域具有潜在应用,这依赖于它们的弹性和柔韧性。然而,关于这些方面的知识相当有限。在此,以四种最典型的MXenes,即TiCT、TiCT、NbCT和NbCT(T = O、OH和F)为例,我们通过第一性原理计算,针对它们的官能团、化学成分和厚度,在纳米尺度上评估了它们的本征面内刚度和面外刚性。我们发现,MXenes的面内刚度(C)和面外弯曲刚性(D)都高度依赖于MX的厚度和表面官能团。具体而言,厚度和表面官能化显著增加了C和D。作为柔韧性描述符的MXenes的每面积Foppl-von Karman数(C/D)与MoS单层的相当,表明MXenes是一类坚固且可弯曲的材料。MXenes的有效厚度,即连接C和D的关键参数,被确定为仅为平均层间距的三分之二。这项研究为在纳米尺度上量化MXenes的刚性提供了基础。