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具有非常规氮杂环卡宾的二配位铜(I)配合物的高效光致发光和电致发光

Highly Efficient Photo- and Electroluminescence from Two-Coordinate Cu(I) Complexes Featuring Nonconventional N-Heterocyclic Carbenes.

作者信息

Shi Shuyang, Jung Moon Chul, Coburn Caleb, Tadle Abegail, Sylvinson M R Daniel, Djurovich Peter I, Forrest Stephen R, Thompson Mark E

出版信息

J Am Chem Soc. 2019 Feb 27;141(8):3576-3588. doi: 10.1021/jacs.8b12397. Epub 2019 Feb 15.

DOI:10.1021/jacs.8b12397
PMID:30768250
Abstract

A series of six luminescent two-coordinate Cu(I) complexes were investigated bearing nonconventional N-heterocyclic carbene ligands, monoamido-aminocarbene (MAC*) and diamidocarbene (DAC*), along with carbazolyl (Cz) as well as mono- and dicyano-substituted Cz derivatives. The emission color can be systematically varied over 270 nm, from violet to red, through proper choice of the acceptor (carbene) and donor (carbazolyl) groups. The compounds exhibit photoluminescent quantum efficiencies up to 100% in fluid solution and polystyrene films with short decay lifetimes (τ ≈ 1 μs). The radiative rate constants for the Cu(I) complexes ( k = 10-10 s) are comparable to state of the art phosphorescent emitters with noble metals such as Ir and Pt. All complexes show strong solvatochromism due to the large dipole moment of the ground states and the transition dipole moment that is in the opposite direction. Temperature-dependent studies of (MAC*)Cu(Cz) reveal a small energy separation between the lowest singlet and triplet states (Δ E = 500 cm) and an exceptionally large zero-field splitting (ZFS = 85 cm). Organic light-emitting diodes (OLEDs) fabricated with (MAC*)Cu(Cz) as a green emissive dopant have high external quantum efficiencies (EQE = 19.4%) and brightness of 54 000 cd/m with modest roll-off at high currents. The complex can also serve as a neat emissive layer to make highly efficient OLEDs (EQE = 16.3%).

摘要

研究了一系列六个具有非常规 N-杂环卡宾配体的发光二配位 Cu(I) 配合物,即单酰胺基氨基卡宾(MAC*)和二酰胺基卡宾(DAC*),以及咔唑基(Cz)以及单氰基和双氰基取代的 Cz 衍生物。通过适当选择受体(卡宾)和供体(咔唑基)基团,发射颜色可以在 270 nm 范围内系统地变化,从紫色到红色。这些化合物在流体溶液和聚苯乙烯薄膜中表现出高达 100% 的光致发光量子效率,且具有短的衰减寿命(τ≈1 μs)。Cu(I) 配合物的辐射速率常数(k = 10-10 s)与具有贵金属(如 Ir 和 Pt)的现有磷光发射体相当。由于基态的大偶极矩和相反方向的跃迁偶极矩,所有配合物都表现出强烈的溶剂化显色性。对(MAC*)Cu(Cz) 的温度依赖性研究表明,最低单重态和三重态之间的能量间隔很小(ΔE = 500 cm),且零场分裂异常大(ZFS = 85 cm)。以(MAC*)Cu(Cz) 作为绿色发光掺杂剂制备的有机发光二极管(OLED)具有高的外量子效率(EQE = 19.4%)和 54000 cd/m 的亮度,在高电流下具有适度的滚降。该配合物还可以用作纯发射层来制造高效 OLED(EQE = 16.3%)。

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