Zhen Chang-Gua, Becker Udo, Kieffer John
Department of Materials Science and Engineering, University of Michigan, Ann Arbor, Michigan 48109, USA.
J Phys Chem A. 2009 Sep 3;113(35):9707-14. doi: 10.1021/jp903796m.
The structure and electronic properties of polyhedral oligomeric silsesquioxane (POSS) cages functionalized with different organic groups have been studied using density functional theory and time-dependent density functional theory calculations. Accordingly, the POSS-T8 cage is quite rigid upon functionalization and thus provides a means for spatially separating conjugated organic fragments, which is useful for the realization of novel organic molecular architectures for light-emitting diodes. Moreover, electronic properties can be tuned through the choice of functional groups and their positioning on or within the POSS cage. Attaching an electron-donating group, such as 4-carbazolephenyl, to the silicon atom at the corner of the cage raises the HOMO level, while attaching an electron-withdrawing group, such as 4-cyanophenyl, or inserting an inert molecule, such as N(2), into the POSS cage lowers the LUMO level. Frontier orbital analysis indicates that the POSS cage is partially conjugated and serves a role as electron acceptor. Carrier transport rates are discussed in the frame of Marcus' electron hopping theory. On the basis of the calculated reorganization energies, these POSS compounds can be used as carrier transporting or blocking materials, depending on the functionalization. Exciton binding energies strongly depend on the spatial arrangement of frontier orbitals rather than on molecular sizes.
利用密度泛函理论和含时密度泛函理论计算方法,研究了用不同有机基团官能化的多面体低聚倍半硅氧烷(POSS)笼的结构和电子性质。因此,POSS-T8笼在官能化后相当刚性,从而为空间分离共轭有机片段提供了一种手段,这对于实现用于发光二极管的新型有机分子结构是有用的。此外,电子性质可以通过官能团的选择及其在POSS笼上或笼内的定位来调节。在笼角的硅原子上连接一个供电子基团,如4-咔唑基苯基,会提高最高占据分子轨道(HOMO)能级,而连接一个吸电子基团,如4-氰基苯基,或者在POSS笼中插入一个惰性分子,如N(2),会降低最低未占据分子轨道(LUMO)能级。前线轨道分析表明,POSS笼部分共轭并起到电子受体的作用。在马库斯电子跳跃理论的框架内讨论了载流子传输速率。根据计算出的重组能,这些POSS化合物可根据官能化情况用作载流子传输或阻挡材料。激子结合能强烈依赖于前线轨道的空间排列而不是分子大小。