论文标题
晶体学C轴取向对几层PTSE2的摩擦学特性的影响
Effect of the crystallographic c-axis orientation on the tribological properties of the few-layer PtSe2
论文作者
论文摘要
二维(2D)过渡金属二分法是在低维系统中超薄固态润滑剂的潜在候选物,这是由于其平稳性,高平面机械强度和低剪切层间层中的强度。然而,尚不清楚表面形貌和表面化学对2D层摩擦学特性的影响。在这项工作中,我们对沉积在蓝宝石底物上的超固有高序的PTSE2层的纳米级摩擦学特性进行了比较研究,该特性与PTSE2 C-axis flakes的平面内和平面外晶体学方向以及平面外晶体学方向以及表达ptSE2层的平面晶体晶体学方向进行了比较研究。发现PTSE2 C轴取向对PTSE2的纳米磨牙,形态和电性能有影响,特别是PTSE2薄片从垂直(VA)到水平(HA)对齐的变化导致摩擦系数从0.21降低到0.21。该观察结果伴随着分别为HA和VA膜的根平方表面粗糙度从1.0 nm增加到1.7 nm。与其他研究的膜相比,外延膜显示出降低粘附性引起的摩擦较低,而摩擦系数类似于HA薄片的膜。观察到的纳米级摩擦趋势归因于PTSE2结构的不同分布。
Two-dimensional (2D) transition metal dichalcogenides are potential candidates for ultrathin solid-state lubricants in low-dimensional systems owing to their flatness, high in-plane mechanical strength, and low shear interlayer strength. Yet, the effects of surface topography and surface chemistry on the tribological properties of 2D layers are still unclear. In this work, we performed a comparative investigation of nanoscale tribological properties of ultra-thin highly-ordered PtSe2 layers deposited on the sapphire substrates with the in-plane and out-of-plane crystallographic orientation of the PtSe2 c-axis flakes, and epitaxial PtSe2 layers. PtSe2 c-axis orientation was found to has an impact on the nanotribological, morphological and electrical properties of PtSe2, in particular the change in the alignment of the PtSe2 flakes from vertical (VA) to horizontal (HA) led to the lowering of the coefficient of friction from 0.21 to 0.16. This observation was accompanied by an increase in the root-mean-square surface roughness from 1.0 to 1.7 nm for the HA and VA films, respectively. The epitaxial films showed lower friction caused by lowering adhesion when compared to other investigated films, whereas the friction coefficient was similar to films with HA flakes. The observed trends in nanoscale friction is attributed to a different distribution of PtSe2 structure.