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Multi-orbital molecular compound (TTM-TTP)I3: Effective model and fragment decomposition

机译:多轨道分子化合物(TTM-TTP)I3:有效的模型和碎片分解

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The electronic structure of the molecular compound (TTM-TTP)I_3, which exhibits a peculiar intra-molecular charge ordering, has been studied using multi-configuration ab initio calculations. First we derive an effective Hubbard-type model based on the molecular orbitals (MOs) of TTM-TTP; we set up a two-orbital Hamiltonian for the two MOs near the Fermi energy and determine its full parameters: the transfer integrals, the Coulomb and exchange interactions. The tightbinding band structure obtained from these transfer integrals is consistent with the result of the direct band calculation based on density functional theory. Then, by decomposing the frontier MOs into two parts, i.e., fragments, we find that the stacked TTM-TTP molecules can be described by a two-leg ladder model, while the inter-fragment Coulomb energies are scaled to the inverse of their distances. This result indicates that the fragment picture that we proposed earlier [M.-L. Bonnet et al.: J. Chem. Phys. 132(2010) 214705] successfully describes the low-energy properties of this compound.
机译:分子化合物(TTM-TTP)I_3的电子结构,表现出独特的分子内电荷顺序,已使用从头开始的多构型计算进行了研究。首先,我们基于TTM-TTP的分子轨道(MOs)得出有效的Hubbard型模型;我们为费米能量附近的两个MOs建立了一个两轨道哈密顿量,并确定其全部参数:传递积分,库仑和交换相互作用。从这些传递积分获得的紧密结合带结构与基于密度泛函理论的直接带计算结果一致。然后,通过将前沿MO分解为两个部分(即碎片),我们发现堆叠的TTM-TTP分子可以用两腿阶梯模型描述,而片段间库仑能按比例缩放至其距离的倒数。 。该结果表明我们先前提出的片段图片[M.-L. Bonnet等:《化学杂志》(J. Chem。)物理132(2010)214705]成功地描述了该化合物的低能性质。

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