CNR-SPIN Institute for Superconductors, Innovative Materials, and Devices, C.so Perrone 24 , 16152 Genova , Italy.
CNR-SPIN and Physics Department , University of Naples Federico II , Piazzale Tecchio , 80125 Napoli , Italy.
Langmuir. 2018 Mar 13;34(10):3207-3214. doi: 10.1021/acs.langmuir.7b04149. Epub 2018 Mar 1.
We report high-resolution surface morphology and friction force maps of polycrystalline organic thin films derived by deposition of the n-type perylene diimide semiconductor PDI8-CN. We show that the in-plane molecular arrangement into ordered, cofacial slip-stacked rows results in a largely anisotropic surface structure, with a characteristic sawtooth corrugation of a few Ångstroms wavelength and height. Load-controlled experiments reveal different types of friction contrast between the alternating sloped and stepped regions, with transitions from atomic-scale dissipative stick-slip to smooth sliding with ultralow friction within the surface unit cell. Notably, such a rich phenomenology is captured under ambient conditions. We demonstrate that friction contrast is well reproduced by numerical simulations assuming a reduced corrugation of the tip-molecule potential nearby the step edges. We propose that the side alkyl chains pack into a compact low-surface-energy overlayer, and friction modulation reflects periodic heterogeneity of chains bending properties and subsurface anchoring to the perylene cores.
我们报告了通过沉积 n 型苝二酰亚胺半导体 PDI8-CN 得到的多晶有机薄膜的高分辨率表面形貌和摩擦力图。我们表明,平面内分子排列成有序的共面滑叠行,导致了一个很大程度上各向异性的表面结构,具有几个埃波长和高度的特征锯齿波纹。负载控制实验揭示了交替倾斜和阶梯区域之间不同类型的摩擦对比,在表面单元内从原子尺度耗散粘滑到超低摩擦的平滑滑动发生转变。值得注意的是,在环境条件下可以很好地捕捉到这种丰富的现象学。我们证明,通过假设在台阶边缘附近的尖端分子势的减小来进行数值模拟,可以很好地再现摩擦力对比。我们提出,侧烷基链组装成一个紧凑的低表面能覆盖层,摩擦力调制反映了链弯曲性质的周期性不均匀性和亚表面对苝核心的锚固。