Departamento de Química e Bioquímica, CQB, Faculdade de Ciências, Universidade de Lisboa, Lisboa, Portugal.
Dalton Trans. 2012 Nov 14;41(42):13210-7. doi: 10.1039/c2dt31104f.
The three compounds [BPh(2)(κ(2)N,N'-NC(4)H(3)C(H)=N-C(6)H(5))] (A), [BPh(2)(κ(2)N,N'-NC(4)H(3)C(H)=N-1,4-C(6)H(4)-N=H)C-H(3)C(4)N-N,N'κ(2))BPh(2)] (B) and [BPh(2)(κ(2)N,N'-NC(4)H(3)C(H)=N-4,4'-C(6)H(4)-C(6)H(4)-N=(H)C-H(3)C(4)N-N,N'κ(2))BPh(2)] (C) are blue to green light emitters with average to excellent quantum yields. DFT and TD-DFT calculations were performed in order to understand their behaviour. The geometry of their ground and singlet excited state was optimised, and their absorption patterns and emission were calculated. The large dihedral angles between the planes of the N-aryl and 2-formiminopyrrolyl moieties of the chelating ligand drop considerably, leading to an almost planar geometry in the singlet state. In the three species, the lowest energy absorption occurs at 383, 428, and 419 nm, being calculated at 377, 502, and 529 nm in the gas-phase (slightly shifted in the right direction in THF). It results from a HOMO to LUMO excitation, and was assigned to a transition between π and π* orbitals (ILCT) of the iminopyrrolyl ligand, despite small differences in the exact composition of the HOMO and LUMO in A, B, and C. Introduction of the LB94 functional did not improve the calculated absorption wavelengths, but PBE0 with an all electron basis set within the SOPERT approximation led to better agreement with the experimental absorption maxima and a good reproduction of the excited state lifetimes. The estimated emission wavelengths reproduce the experimental trends.
三种化合物 [BPh(2)(κ(2)N,N'-NC(4)H(3)C(H)=N-C(6)H(5))] (A)、[BPh(2)(κ(2)N,N'-NC(4)H(3)C(H)=N-1,4-C(6)H(4)-N=H)C-H(3)C(4)N-N,N'κ(2))BPh(2)] (B) 和 [BPh(2)(κ(2)N,N'-NC(4)H(3)C(H)=N-4,4'-C(6)H(4)-C(6)H(4)-N=(H)C-H(3)C(4)N-N,N'κ(2))BPh(2)] (C) 是蓝色到绿色的发光体,具有平均到优异的量子产率。为了理解它们的行为,进行了 DFT 和 TD-DFT 计算。优化了它们基态和单重激发态的几何形状,并计算了它们的吸收模式和发射。螯合配体的 N-芳基和 2-亚氨基吡咯基部分的平面之间的大二面角大大降低,导致单重态几乎为平面几何形状。在这三种物质中,最低能量的吸收发生在 383、428 和 419nm,在气相中计算为 377、502 和 529nm(在 THF 中略有右移)。它是由 HOMO 到 LUMO 的激发引起的,被分配到亚氨基吡咯基配体的π和π*轨道之间的跃迁(ILCT),尽管 A、B 和 C 中 HOMO 和 LUMO 的精确组成存在微小差异。引入 LB94 函数并不能改善计算的吸收波长,但 PBE0 与 SOPERT 近似中的全电子基组相结合,导致与实验吸收最大值更好地吻合,并很好地再现了激发态寿命。估计的发射波长再现了实验趋势。