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首页> 外文期刊>ACS applied materials & interfaces >A New Class of Sky-Blue-Emitting Ir(III) Phosphors Assembled Using Fluorine-Free Pyridyl Pyrimidine Cyclometalates: Application toward High-Performance Sky-Blue- and White-Emitting OLEDs
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A New Class of Sky-Blue-Emitting Ir(III) Phosphors Assembled Using Fluorine-Free Pyridyl Pyrimidine Cyclometalates: Application toward High-Performance Sky-Blue- and White-Emitting OLEDs

机译:使用无氟吡啶嘧啶环金属酸盐组装的新型天蓝色Ir(III)荧光粉:在高性能天蓝色和白色发光OLED中的应用

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摘要

Two pyrimidine chelates with the pyridin-2-yl group residing at either the 5- or 4-positions are synthesized. These chelates are then utilized in synthesizing of a new class of heteroleptic Ir(III) metal complexes, namely [Ir(b5ppm)2(fppz)] (1), [Ir(bSbpm)2(fppz)] (2), [Ir(b4bpm)2(fppz)] (3), and [Ir(bSbpm)(fppz) (4), for which the abbreviations bSppm, bSbpm, b4bpm, and fppz represent chelates derived from 2-t-butyl-S-(pyridin-2-yl)pyrimidine, 2-t-butyl-S-(4-t-butylpyridin-2-yl)pyrimidine, 2-t-butyl-4-(4-r-butylpyridin-2-yl)pyrimidine, and 3-trifluoromethyl-5-(pyridin-2-yl) pyrazole, respectively. The single crystal X-ray structural analyses were executed on 1 to reveal their coordination arrangement around the Ir(III) metal element. The 5-substituted pyrimidine complexes 1, 2, and 4 exhibited the first emission peak wavelength (λ_(max)) located in the range 452-457 nm with high quantum yields, whereas the emission of 3 with 4-substituted pyrimidine was red-shifted substantially to longer wavelength with λ_(max)= 535 nm. These photophysical properties were discussed under the basis of computational approaches, particularly the relationship between emission color and the relative position of nitrogen atoms of pyrimidine fragment. For application, organic light-emitting diodes (OLEDs) were also fabricate pynmidme fragment. For application, organic light-emitting diodes (OLEDs) were also fabricated using 2 and 4 as dopants attaining the peak external quantum, luminance, and power efficiencies of 17.9% (38.0 cd/A and 35.8 lm/W) and 15.8% (30 6 cd/A and 24.8 lm/W), respectively. Combining sky blue-emitting 2 and red-emitting [Os(bpftz)2(PPh2Me)2] (S), the phosphorescent white OLEDs were demonstrated with stable pure-white emission at CIE coordinate of (0.33 0 34) and peak luminance efficiency of 35.3 cd/A, power efficiency of 30.4 lm/W, and external quantum efficiency up to 17.3%.
机译:合成两个嘧啶螯合物,其吡啶-2-基位于5-或4-位。然后将这些螯合物用于合成一类新的杂化Ir(III)金属配合物,即[Ir(b5ppm)2(fppz)](1),[Ir(bSbpm)2(fppz)](2),[ Ir(b4bpm)2(fppz)](3)和[Ir(bSbpm)(fppz)(4),其缩写bSppm,bSbpm,b4bpm和fppz表示从2-叔丁基-S-衍生的螯合物(吡啶-2-基)嘧啶,2-叔丁基-S-(4-叔丁基吡啶-2-基)嘧啶,2-叔丁基-4-(4-叔丁基吡啶-2-基)嘧啶,和3-三氟甲基-5-(吡啶-2-基)吡唑。对1进行了单晶X射线结构分析,揭示了它们在Ir(III)金属元素周围的配位安排。 5个取代的嘧啶配合物1、2和4的第一个发射峰波长(λ_(max))位于452-457 nm范围内,具有高量子产率,而4个取代的嘧啶的3发射为红色-基本上移到了更长的波长,λ_(max)= 535 nm。在计算方法的基础上讨论了这些光物理性质,特别是发射颜色与嘧啶片段氮原子相对位置之间的关系。对于应用,有机发光二极管(OLED)也可以制造嘧啶片段。对于应用,还使用2和4作为掺杂剂制造了有机发光二极管(OLED),其峰值外部量子,亮度和功率效率分别为17.9%(38.0 cd / A和35.8 lm / W)和15.8%(30) 6 cd / A和24.8 lm / W)。结合了发射蓝色的天蓝色2和发射红色的[Os(bpftz)2(PPh2Me)2](S),证明了磷光白色OLED在(0.33 0 34)的CIE坐标下具有稳定的纯白色发射和峰值亮度效率功率为35.3 cd / A,功率效率为30.4 lm / W,外部量子效率高达17.3%。

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