Baby Anu, Lin He, Brivio Gian Paolo, Floreano Luca, Fratesi Guido
ETSF, CNISM, Dipartimento di Scienza dei Materiali, Università di Milano-Bicocca, Via Cozzi 55, I-20125 Milano, Italy.
CNR-IOM, Laboratorio TASC, Basovizza SS-14, Km 163.5, I-34149 Trieste, Italy.
Beilstein J Nanotechnol. 2015 Nov 27;6:2242-51. doi: 10.3762/bjnano.6.230. eCollection 2015.
By first-principle simulations we study the effects of molecular deformation on the electronic and spectroscopic properties as it occurs for pentacene adsorbed on the most stable site of Al(001). The rationale for the particular V-shaped deformed structure is discussed and understood. The molecule-surface bond is made evident by mapping the charge redistribution. Upon X-ray photoelectron spectroscopy (XPS) from the molecule, the bond with the surface is destabilized by the electron density rearrangement to screen the core hole. This destabilization depends on the ionized carbon atom, inducing a narrowing of the XPS spectrum with respect to the molecules adsorbed hypothetically undistorted, in full agreement to experiments. When looking instead at the near-edge X-ray absorption fine structure (NEXAFS) spectra, individual contributions from the non-equivalent C atoms provide evidence of the molecular orbital filling, hybridization, and interchange induced by distortion. The alteration of the C-C bond lengths due to the V-shaped bending decreases by a factor of two the azimuthal dichroism of NEXAFS spectra, i.e., the energy splitting of the sigma resonances measured along the two in-plane molecular axes.
通过第一性原理模拟,我们研究了分子变形对电子和光谱性质的影响,这种影响在并五苯吸附在Al(001)最稳定位点时会出现。讨论并理解了特定V形变形结构的原理。通过绘制电荷重新分布,分子与表面的键变得明显。在对分子进行X射线光电子能谱(XPS)分析时,与表面的键会因电子密度重排以屏蔽芯孔而变得不稳定。这种不稳定取决于电离的碳原子,导致XPS光谱相对于假设未变形吸附的分子变窄,这与实验完全一致。相反,当观察近边X射线吸收精细结构(NEXAFS)光谱时,来自不等价C原子的单独贡献提供了分子轨道填充、杂化以及由变形引起的交换的证据由于V形弯曲导致的C-C键长变化使NEXAFS光谱的方位二向色性降低了两倍,即沿两个面内分子轴测量得到的σ共振的能量分裂。