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Influence of steps on the tilting and adsorption dynamics of ordered Pentacene films on vicinal Ag(111) surfaces

机译:步骤对邻近的Ag(111)表面有序并五苯薄膜的倾斜和吸附动力学的影响

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摘要

Here we present a structural study of pentacene (Pn)\udthin films on vicinal Ag(111) surfaces by He atom diffraction\udmeasurements and density functional theory (DFT) calculations supplemented with van der Waals (vdW) interactions. Our He atom diffraction results suggest initial adsorption at the step edges evidenced by initial slow specular reflection intensity decay rate as a function of\udPn deposition time. In parallel with the experimental findings, our DFT+vdW calculations predict the step edges as the most stable adsorption site on the surface. An isolated molecule adsorbs as tilted on the step edge with a binding energy of 1.4 eV. In addition, a complete monolayer (ML) with pentacenes flat on the terraces and tilted only at the step edges is found to be more stable than\udone with all lying flat or tilted molecules, which in turn influences multilayers. Hence our results suggest that step edges can trap Pn molecules and act as nucleation sites for the growth of ordered thin films with a crystal structure similar to that of bulk Pn.
机译:在此,我们通过He原子衍射\测量和密度泛函理论(DFT)计算以及范德华(vdW)相互作用,对邻位Ag(111)表面并五苯(Pn)\ udthin膜进行结构研究。我们的He原子衍射结果表明,步长边缘处的初始吸附由初始慢镜面反射强度衰减率随udPn沉积时间的函数证明。与实验结果并行的是,我们的DFT + vdW计算将台阶边缘预测为表面上最稳定的吸附点。分离出的分子以1.4 eV的结合能倾斜地吸附在台阶边缘上。另外,发现戊烯在平台上平坦且仅在台阶边缘倾斜的完整单层(ML)比所有平整或倾斜分子的戊酮更稳定,这反过来又影响多层。因此,我们的结果表明,台阶边缘可以俘获Pn分子并充当成核位置,以使晶体结构类似于块状Pn的有序薄膜的生长。

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