Yusupov Khabib, Björk Jonas, Rosen Johanna
Division of Materials Design, Department of Physics, Chemistry, and Biology, Linköping University Linköping 581 83 Sweden
Nanoscale Adv. 2023 Jul 10;5(15):3976-3984. doi: 10.1039/d2na00830k. eCollection 2023 Jul 25.
Functional 2D materials are interesting for a wide range of applications. The rapid growth of the MXene family is due to its compositional diversity, which, in turn, allows significant tuning of the properties, and hence their applicability. The properties are to a large extent dictated by surface terminations. In the present work, we demonstrate the influence of termination species (O, NH, N, S, F, Cl, Br, I) on the changes in electronic structure, work function, dynamical stability, and atomic charges and distances of MXenes (TiC, NbC, VC, MoC, TiC and NbC). Among these systems, the work function values were not previously reported for ∼60% of the systems, and most of the previously reported MXenes with semiconducting nature are here proven to be dynamically unstable. The results show that the work function generally decreases with a reduced electronegativity of the terminating species, which in turn is correlated to a reduced charge of both the metal and terminating species and an increased metal-termination distance. An exception to this trend is NH terminations, which display a significantly reduced work function due to an intrinsic dipole moment within the termination. Furthermore, the results suggest that halogen terminations improve the electrical conductivity of the materials.
功能性二维材料在广泛的应用中具有吸引力。MXene家族的迅速发展归因于其组成的多样性,这反过来又使得其性能能够得到显著调节,进而提高了它们的适用性。这些性能在很大程度上由表面端基决定。在本工作中,我们展示了端基种类(O、NH、N、S、F、Cl、Br、I)对MXenes(TiC、NbC、VC、MoC、TiC和NbC)的电子结构、功函数、动力学稳定性以及原子电荷和距离变化的影响。在这些体系中,约60%的体系的功函数值此前未曾报道,并且这里证明大多数先前报道的具有半导体性质的MXenes是动力学不稳定的。结果表明,功函数通常随着端基种类电负性的降低而减小,这反过来又与金属和端基种类电荷的减少以及金属 - 端基距离的增加相关。该趋势的一个例外是NH端基,由于端基内的固有偶极矩,其功函数显著降低。此外,结果表明卤素端基提高了材料的电导率。