Key Laboratory for Organic Electronics & Information Displays (KLOEID), China.
Phys Chem Chem Phys. 2010 Dec 21;12(47):15448-58. doi: 10.1039/c0cp00132e. Epub 2010 Oct 22.
By mimicking the molecular structure of 4,4'-bis(N-carbazolyl)-2,2'-biphenyl (CBP), which is a widely used host material, a new series of host molecules (carbazole-endcapped heterofluorenes, CzHFs) were designed by linking the hole-transporting carbazole to the core heterofluorene molecules in either meta or para positions of the heterofluorene. The aromatic cores considered in this study are biphenyl, fluorene, silafluorenes, germafluorenes, carbazole, phosphafluorene, oxygafluorene, and sulfurafluorene. To reveal their molecular structures, optoelectronic properties and structure-property relationships of the proposed host materials, an in-depth theoretical investigation was elaborated via quantum chemical calculations. The electronic structures in the ground states, cationic and anionic states, and lowest triplet states of these designed molecules have been studied with emphasis on the highest occupied molecular orbitals (HOMOs), the lowest unoccupied molecular orbitals (LUMOs), energy gaps (E(g)), triplet energy gaps ((3)E(g)), as well as some other electronic properties including ionization potentials (IPs), electron affinities (EAs), reorganization energies (λ), triplet exciton generation fraction (χ(T)), spin density distributions (SD), and absorption spectra. These photoelectronic properties can be tuned by chemical modifications of the heteroatom and the carbazole substitution at different positions. This study provides theoretical insights into the nature of host molecules, and shows that the designed CzHFs can meet the requirements of the host materials for triplet emitters.
通过模拟广泛使用的主体材料 4,4'-双(N-咔唑基)-2,2'-联苯(CBP)的分子结构,我们设计了一系列新的主体分子(咔唑端封杂芴,CzHFs),即将空穴传输咔唑连接到杂芴分子的核心上,位置在杂芴的间位或对位。本研究中考虑的芳环核为联苯、芴、硅芴、锗芴、咔唑、磷杂芴、氧芴和硫芴。为了揭示这些主体材料的分子结构、光电性质和结构-性质关系,我们通过量子化学计算进行了深入的理论研究。我们重点研究了这些设计分子的基态、阳离子态和阴离子态以及最低三重态的电子结构,包括最高占据分子轨道(HOMO)、最低未占据分子轨道(LUMO)、能隙(E(g))、三重态能隙((3)E(g))以及一些其他电子性质,如电离势(IP)、电子亲合势(EA)、重组能(λ)、三重态激子产生分数(χ(T))、自旋密度分布(SD)和吸收光谱。这些光电性质可以通过杂原子和咔唑在不同位置的取代进行化学修饰来调节。这项研究提供了对主体分子性质的理论见解,并表明设计的 CzHFs 可以满足三重态发射器对主体材料的要求。