Zazza Costantino, Meloni Simone, Palma Amedeo, Knupfer Martin, Fuentes Gonzalo G, Car Roberto
Consorzio Interuniversitario per le Applicazioni di Supercalcolo Per Università e Ricerca (CASPUR), Via dei Tizii 6b, 00185 Roma, Italy.
Phys Rev Lett. 2007 Jan 26;98(4):046401. doi: 10.1103/PhysRevLett.98.046401. Epub 2007 Jan 22.
Using density functional theory calculations we have found that K atoms in a PTCDA (3,4:9,10-perylenetetracarboxylic dianhydride) crystal form a quasi-one-dimensional (1D) K-O chain interacting with carboxylic oxygen of the terminal anhydride groups of PTCDA. The K-K distance in the chain (3.72 Angstrom) is commensurate to the periodicity of the organic semiconductor. We obtain that the K-O structure is stabilized by charge transfer from K to PTCDA molecules, forming prevalently ionic bonds: the electronic density of the chemistry induced gap states is essentially delocalized on the perylene core of PTCDA, while potassium appears spoiled of its charge. Band dispersion along the direction of molecular stack is evaluated to be 0.2 eV in pure PTCDA crystal and 0.5 eV in the K-doped system, confirming that the interaction occurs between different molecular planes.
通过密度泛函理论计算,我们发现PTCDA(3,4:9,10-苝四羧酸二酐)晶体中的K原子形成了一个准一维(1D)K-O链,该链与PTCDA末端酸酐基团的羧基氧相互作用。链中的K-K距离(3.72埃)与有机半导体的周期性相称。我们发现,K-O结构通过从K到PTCDA分子的电荷转移而稳定,主要形成离子键:化学诱导能隙态的电子密度基本上离域在PTCDA的苝核上,而钾似乎失去了其电荷。在纯PTCDA晶体中,沿分子堆积方向的能带色散估计为0.2 eV,在K掺杂体系中为0.5 eV,这证实了不同分子平面之间存在相互作用。