Osawa Masahisa, Hoshino Mikio, Hashimoto Masashi, Kawata Isao, Igawa Satoshi, Yashima Masataka
Luminescent Materials Laboratory, RIKEN, 2-1 Hirosawa, Wako-Shi 351-0198, Japan.
Dalton Trans. 2015 May 14;44(18):8369-78. doi: 10.1039/c4dt02853h.
A series of three-coordinate copper(I) complexes (L(Me))CuX [X = Cl (1), Br (2), I (3)], (L(Et))CuBr (4), and (L(iPr))CuBr (5) [L(Me) = 1,2-bis[bis(2-methylphenyl)phosphino]benzene, L(Et) = 1,2-bis[bis(2-ethylphenyl)phosphino]benzene, and L(iPr) = 1,2-bis[bis(2-isopropylphenyl)phosphino]benzene] exhibit efficient blue-green emission in the solid state at ambient temperature with peak wavelengths between 473 and 517 nm. The emission quantum yields were 0.38-0.95. The emission lifetimes were measured in the temperature range of 77-295 K using a nanosecond laser technique. The temperature dependence of the emission lifetimes was explained using a model with two excited states: a singlet and a triplet state. The small energy gaps (<830 cm(-1)) between the two states suggest that efficient emission from 1-5 was thermally activated delayed fluorescence (TADF). Alkyl substituents at ortho positions of peripheral phenyl groups were found to have little effect on the electronic excited states. Because the origin of the emission of complexes 2, 4, and 5 was thought to be a (σ + Br)→π* transition, photoluminescence characteristics of these complexes were dominated by the diphosphine ligands. Complexes 2, 4, and 5 had similar emission properties. Complexes 1-5 had efficient green TADF in amorphous films at 293 K with maximum emission wavelengths of 508-520 nm and quantum yields of 0.61-0.71. Organic light-emitting devices that contained complexes 1-5 and exhibited TADF exhibit bright green luminescence with current efficiencies of 55.6-69.4 cd A(-1) and maximum external quantum efficiencies of 18.6-22.5%.
一系列三配位铜(I)配合物(L(Me))CuX [X = Cl(1),Br(2),I(3)],(L(Et))CuBr(4)和(L(iPr))CuBr(5)[L(Me) = 1,2 - 双[双(2 - 甲基苯基)膦基]苯,L(Et) = 1,2 - 双[双(2 - 乙基苯基)膦基]苯,L(iPr) = 1,2 - 双[双(2 - 异丙基苯基)膦基]苯]在室温下的固态中表现出高效的蓝绿色发射,峰值波长在473至517 nm之间。发射量子产率为0.38 - 0.95。使用纳秒激光技术在77 - 295 K的温度范围内测量发射寿命。发射寿命的温度依赖性使用具有两个激发态的模型来解释:一个单重态和一个三重态。这两个态之间的小能隙(<830 cm⁻¹)表明1 - 5的高效发射是热激活延迟荧光(TADF)。发现外围苯基邻位的烷基取代基对电子激发态影响很小。由于配合物2、4和5的发射起源被认为是(σ + Br)→π*跃迁,这些配合物的光致发光特性由二膦配体主导。配合物2、4和5具有相似的发射性质。配合物1 - 5在293 K的非晶薄膜中具有高效的绿色TADF,最大发射波长为508 - 520 nm,量子产率为0.61 - 0.71。包含配合物1 - 5并表现出TADF的有机发光器件发出亮绿色光,电流效率为55.6 - 69.4 cd A⁻¹,最大外量子效率为18.6 - 22.5%。