Department of Physics, Marmara University, 34722, Ziverbey, Istanbul, Turkey.
Phys Chem Chem Phys. 2019 Jan 2;21(2):901-914. doi: 10.1039/c8cp06982d.
We report a computational study on the effect of side-chain substitution, heteroaromatic substitution and unique crystal packing on the charge transport and mobility of three double helicene molecules. These double helicene (DH) molecules, having curved π-conjugation, are structural hybrids of non-planar [6]helicene and planar tribenzo[b,n,pqr]perylene (TBP). We find that side-chain substitution has only a effect on intrinsic electronic properties in DHs but dramatically impacts the packing arrangement, morphologies and transport network, exhibited in calculated charge transport parameters. Interestingly, the dimensionality of the transport evolves from one dimensional to three dimensional with side-chain substitution (DH2) and heteroaromatic substitution (DH3). Using two different well-known transport models, we have established a direct link between the morphology, transport connectivity, and hole mobilities. While both unsubstituted and substituted DHs exhibit high hole mobilities in the ordered phase, the results show that with inclusion of positional disorder, the mobilities of disordered DH1 and DH3 are lower while the mobility of DH2 remain nearly unchanged. We relate this effect to the dimensionality of their unique transport networks. These DH molecules are promising organic semiconductors with high mobilities in ordered and disordered phases, with predicted values that lie in the range of ∼1 to 10 cm2 V-1 s-1.
我们报告了一项关于侧链取代、杂芳环取代和独特晶体堆积对三种双螺旋分子电荷输运和迁移率影响的计算研究。这些双螺旋(DH)分子具有弯曲的π共轭,是非平面[6]螺旋和平面三苯并[b,n,pqr]苝(TBP)的结构杂合体。我们发现,侧链取代仅对 DHs 的固有电子性质有影响,但会显著影响堆积排列、形态和输运网络,这在计算的电荷输运参数中表现出来。有趣的是,随着侧链取代(DH2)和杂芳环取代(DH3),输运的维度从一维演变为三维。使用两种不同的著名输运模型,我们已经在形态、输运连接性和空穴迁移率之间建立了直接联系。虽然未取代和取代的 DHs 在有序相中都表现出高的空穴迁移率,但结果表明,随着位置无序的引入,无序 DH1 和 DH3 的迁移率降低,而 DH2 的迁移率几乎保持不变。我们将这种效应归因于它们独特输运网络的维度。这些 DH 分子是具有高迁移率的有前途的有机半导体,在有序相和无序相中,预测值在 1 到 10 cm2 V-1 s-1 范围内。