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Fermiology of two-dimensional titanium carbide and nitride MXenes

机译:二维碳化钛和氮化物Mxenes的恶性学

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摘要

MXenes are a family two-dimensional transition-metal carbide and nitride materials, which often exhibit very good metallic conductivity and are thus of great interest for applications in, e.g., flexible electronics, electrocatalysis, and electromagnetic interference shielding. However, surprisingly little is known about the fermiology of MXenes, i.e., the shape and size of their Fermi surfaces, and its effect on the material properties. One reason for this may be that MXene surfaces are almost always covered by a mixture of functional groups, and studying Fermi surfaces of disordered systems is cumbersome. Here, we study fermiology of four common Ti-based MXenes as a function of the surface functional group composition. We first calculate the effective band structures of systems with explicit mixed surfaces and observe gradual evolution in the filling of the Ti-d band and resulting shift of Fermi level. We then demonstrate that these band structures can be closely approximated by using pseudohydrogenated surfaces, and also compare favorably to the experimental angle-resolved photoemission spectroscopy results. By modifying the pseudohydrogen charge we then proceed to plot Fermi surfaces for all systems and extract their properties, such as the Fermi-surface area and average Fermi velocity. These are in turn used to evaluate the electrical conductivity with the relaxation time fitted to experimentally measured conductivities.
机译:MXENES是一种家庭二维过渡金属碳化物和氮化物材料,其通常具有非常好的金属导电性,因此对于应用中的应用,例如柔性电子,电常放和电磁干扰屏蔽非常有兴趣。然而,令人惊讶的是,关于它们的费米物,即它们的费米表面的形状和尺寸以及其对材料特性的影响。这可能是一个原因可以是MxEne表面几乎总是被官能团的混合物覆盖,并且研究无序系统的Fermi表面是麻烦的。这里,我们研究四种常见的Ti基掺压的神经晶体作为表面官能团组合物的函数。我们首先计算具有显式混合表面的系统的有效乐队结构,并观察填充Ti-D带的逐渐演变并导致费米水平的偏移。然后,我们证明这些带结构可以通过使用假氢化表面密切地近似,并且还可以对实验角度分辨的光曝光光谱结果进行比较。通过改变伪氢充电,我们继续为所有系统绘制Fermi表面并提取它们的性质,例如Fermi-Surface区域和平均费米速度。这些反过来用于评估电导率与拟合实验测量的导电性的弛豫时间。

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