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Light-emitting platinum(ii) complexes supported by tetradentate dianionic bis(N-heterocyclic carbene) ligands : towards robust blue electrophosphors

机译:四齿双阴离子双(N-杂环卡宾)配体支撑的发光铂(ii)配合物:朝向稳定的蓝色电致磷光体

摘要

The synthesis, structures and photophysical properties of the charge-neutral Pt(ii) complexes (1-6) and their Pd(ii) (7) and Ni(ii) (8) congeners supported by tetradentate dianionic bis[phenolate-(N-heterocyclic carbene)] ligands are described. The X-ray crystal structures of two solvatomorphs of 2, which has p-F substituents on the tetradentate ligand, have been determined. The photophysical properties of all the complexes were examined. In THF solutions, 1-4 display deep blue phosphorescence (λmax = ∼440-460 nm, Φe = 3-18% and τ = 0.5-3.5 μs). In solutions at room temperature, 5-8 show profoundly different luminescence properties from being virtually non-emissive (Φe 10-3) for 6-8 to highly emissive (Φe = 15%) with much red-shifted phosphorescence (λmax = ∼530 nm) and a long emission lifetime (τ = 47.2 μs) in the case of 5. Time-dependent density functional theory (TDDFT) calculations reveal that the tetradentate bis(phenolate-NHC) ligands in 1-4 provide a rigid scaffold for preserving a tightly bound Pt(ii) in a square-planar coordination geometry in the T 1 as in the S0 states and the blue emission is derived from the T1 state having predominant ligand (πAr-O)-to- ligand (π*NHC) charge transfer (LLCT) character. A switch of orbital parentage from LLCT to ligand-centred (LC) π-π* is responsible for the long emission lifetime and vibronically structured emission displayed by 5 when compared to that of 1-4 and 6. Both femtosecond time-resolved fluorescence (fs-TRF) and nanosecond time-resolved emission (ns-TRE) measurements were conducted on 2 and 4 to directly probe the excited-state dynamics after photoexcitation. Excellent thermal stability of the fluorine-free complex 4 and its higher emission quantum yield (relative to 1 and 3), and using 9-(4-tert-butylphenyl)-3,6-bis(triphenylsilyl)-9H-carbazole (CzSi) as host material, led to the fabrication of highly efficient deep blue OLEDs with peak current efficiency of 24 cd A-1 and white organic light-emitting devices (WOLEDs) with peak current efficiency of 88 cd A -1.
机译:四齿双阴离子双[酚盐-(N)负载的电荷中性Pt(ii)配合物(1-6)及其Pd(ii)(7)和Ni(ii)(8)同系物的合成,结构和光物理性质-杂环杂环]配体被描述。已确定在四齿配体上具有p-F取代基的两个2的溶剂化物的X射线晶体结构。检查了所有配合物的光物理性质。在THF溶液中,1-4显示深蓝色磷光(λmax=约440-460 nm,Φe= 3-18%和τ= 0.5-3.5μs)。在室温下的溶液中,5-8的发光特性从6-8的几乎不发光(Φe<10-3)到高发射(Φe= 15%)的磷光有很多红移(λmax=〜 530 nm)和5的情况下较长的发射寿命(τ= 47.2μs)。时变密度泛函理论(TDDFT)计算表明,1-4中的四齿双(酚酸酯-NHC)配体为与S0态一样,在T 1中以正方形平面配位几何形式保留紧密结合的Pt(ii),并且蓝色发射是从具有主要配体(πAr-O)-配体(π* NHC)的T1状态导出的)电荷转移(LLCT)字符。与1-4和6相比,由5所显示的较长的发射寿命和5所显示的纤维化结构发射,导致了从LLCT到配体中心(LC)π-π*的轨道亲子关系的转换。飞秒时间分辨荧光( fs-TRF)和纳秒时间分辨发射(ns-TRE)的测量是在2和4上进行的,以直接探测光激发后的激发态动力学。使用9-(4-叔丁基苯基)-3,6-双(三苯基甲硅烷基)-9H-咔唑(CzSi)时,无氟配合物4具有出色的热稳定性,并具有较高的发射量子产率(相对于1和3)。 )作为主体材料,导致制造了峰值电流效率为24 cd A-1的高效深蓝色OLED和峰值电流效率为88 cd A -1的白色有机发光器件(WOLED)。

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