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Structural, Electronic, and Optical Properties of Phenol-Pyridyl Boron Complexes for Light-Emitting Diodes

机译:用于发光二极管的苯酚-吡啶基硼配合物的结构,电子和光学性质

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The coordination chemistry of polydentate chelating ligands that contain mixed pyridinephenol donor sets has been a sought-after target of study and is a possible extension to the chemistry of polypyridines. In this article, seven compounds, which are the four-coordinate boron complexes containing the mixed phenol-pyridyl group, have been studied by theoretical calculation. They can function as charge transport materials and emitters, with high efficiency and stability. To reveal the relationship between the structures and properties of these bifunctional or multifunctional electroluminescent materials, the ground and excited state geometries were optimized at the B3LYP/6-31G(d), HF/6-31G(d), and CIS/6-31G(d) levels, respectively. The ionization potentials (IPs) and electron affinities (EAs) were computed. The mobilities of hole and electron in these compounds were studied computationally based on the Marcus electron transfer theory. The lowest excitation energies, and the maximum absorption and emission wavelengths of these compounds were calculated by time-dependent density functional theory method. As a result of these calculations, the values of HOMO, LUMO, energy gaps, IP's, EAs, and the balance between the hole- and electron-transfer are greatly improved with the substitution of carbazole in compound 6. The calculated emission spectra of the seven studied molecules can almost cover the full UV-vis range (from 447.4 to 64.9.3 nm). Also, the Stokes shifts are unexpectedly large, ranging from 139.4 to 335.1 nm. This will result in the relatively long fluorescence lifetimes.
机译:含有混合的吡啶酚供体组的多齿螯合配体的配位化学一直是人们追求的研究目标,并且可能是对多吡啶化学的扩展。在本文中,通过理论计算研究了七种化合物,它们是含有混合酚-吡啶基的四配位硼配合物。它们可以用作电荷传输材料和发射器,具有高效率和稳定性。为了揭示这些双功能或多功能电致发光材料的结构与性质之间的关系,在B3LYP / 6-31G(d),HF / 6-31G(d)和CIS / 6-分别为31G(d)级。计算了电离势(IP)和电子亲和力(EA)。根据Marcus电子转移理论,对这些化合物中的空穴和电子的迁移率进行了计算研究。通过随时间变化的密度泛函理论方法计算出这些化合物的最低激发能以及最大吸收和发射波长。这些计算的结果是,通过用化合物6中的咔唑取代,极大地改善了HOMO,LUMO,能隙,IP,EA和空穴传输与电子传输之间的平衡值。研究的七个分子几乎可以覆盖整个UV-vis范围(从447.4到64.9.3 nm)。同样,斯托克斯位移出乎意料的大,范围从139.4到335.1 nm。这将导致较长的荧光寿命。

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