Calloni Alberto, Bussetti Gianlorenzo, Avvisati Giulia, Jagadeesh Madan S, Pacilè Daniela, Ferretti Andrea, Varsano Daniele, Cardoso Claudia, Duò Lamberto, Ciccacci Franco, Betti Maria Grazia
Dipartimento di Fisica, Politecnico di Milano, piazza Leonardo da Vinci 32, I-20133 Milano, Italy.
Dipartimento di Fisica, Università di Roma "La Sapienza", I-00185 Roma, Italy.
J Chem Phys. 2020 Dec 7;153(21):214703. doi: 10.1063/5.0021814.
The dispersion of the electronic states of epitaxial graphene (Gr) depends significantly on the strength of the bonding with the underlying substrate. We report on empty electron states in cobalt-intercalated Gr grown on Ir(111), studied by angle-resolved inverse photoemission spectroscopy and x-ray absorption spectroscopy, complemented with density functional theory calculations. The weakly bonded Gr on Ir preserves the peculiar spectroscopic features of the Gr band structure, and the empty spectral densities are almost unperturbed. Upon intercalation of a Co layer, the electronic response of the interface changes, with an intermixing of the Gr π bands and Co d states, which breaks the symmetry of π/σ states, and a downshift of the upper part of the Gr Dirac cone. Similarly, the image potential of Ir(111) is unaltered by the Gr layer, while a downward shift is induced upon Co intercalation, as unveiled by the image state energy dispersion mapped in a large region of the surface Brillouin zone.
外延石墨烯(Gr)的电子态色散很大程度上取决于与底层衬底的键合强度。我们报道了通过角分辨逆光电子能谱和X射线吸收光谱研究,并结合密度泛函理论计算,对生长在Ir(111)上的钴插层Gr中的空电子态进行的研究。Ir上弱键合的Gr保留了Gr能带结构的独特光谱特征,并且空光谱密度几乎未受干扰。插入Co层后,界面的电子响应发生变化,Gr π带和Co d态混合,这打破了π/σ态的对称性,并且Gr狄拉克锥的上部向下移动。同样,Ir(111)的镜像势不受Gr层影响,而插入Co后会导致向下移动,这是通过在表面布里渊区的大区域中绘制的镜像态能量色散揭示的。