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Human-eyes-friendly white electroluminescence from solution-processable hybrid OLEDs exploiting new iridium (III) complex containing benzoimidazophenanthridine ligand

机译:来自溶液可加工的杂交OLED的人眼友好的白色电致发光,利用含有苯并咪唑膦植配体的新铱(III)络合物

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This paper primarily deals with the development of highly efficient phosphorescent iridium (III) complex based on benzoimidazophenanthridine as main ligand. The potential of this complex, as phosphorescent emitter for optoelectronic applications, was screened by different methods, including luminescence spectrometry, cyclic voltammetry, thermogravimetric analysis, differential scanning calorimetry as well as photoelectron emission spectrometry. The possible application of the developed complex in single-colour vacuum-deposited organic light emitting diodes (OLEDs) exhibiting warm orange electrophosphorescence was demonstrated. The device was characterized with CIE1931 colour coordinates of (0.539, 0.459), colour temperature of 2088 K and maximum external quantum efficiency of 17.5%. Good performance in OLEDs can be partly explained by efficient orange phosphorescence with quantum yield of 60% at room temperature. This paper also deals with the development of white hybrid solution-processable organic light-emitting devices, exploiting ultralow concentration of newly synthesized iridium (III) complex as phosphorescent dopant in combination with blue fluorescencent emitter(host), and green emitter exhibiting thermally activated delayed fluorescence emitter. It was designed and fabricated by spin coating white hybrid devices, and was characterized by high quality (human-eyes-friendly) electroluminescence achieving CIE1931 coordinates of (0.335, 0.392), colour temperature of 2910 K and colour rendering index of 72 as well as high maximum external quantum efficiency of 8.7%.
机译:本文主要涉及基于Benzoimazophen蒽啶作为主要配体的高效磷光铱(III)复合物的开发。作为光电应用的磷光发射器的这种复合物的电位被不同的方法筛选,包括发光光谱法,循环伏安法,热重分析,差示扫描量热法以及光电子发射光谱法。表现出了在表现出温橙电磷光的单色真空沉积的有机发光二极管(OLED)中所发育的复合物的可能施加。该装置的特征在于CIE1931颜色坐标(0.539,0.459),色温为2088 k,最大外部量子效率为17.5%。可以通过高效橙色磷光在室温下的量子产率为60%的橙色磷光,部分解释OLED中的良好性能。本文还涉及开发白杂化溶液可加工的有机发光器件,利用新合成的铱星(III)复合物的超级浓度与蓝荧光发射器(宿主)组合的磷光掺杂剂,绿色发射器表现出热活化的延迟荧光发射器。它是由旋转涂层白色混合装置设计和制造的,其特点是高质量(人眼友好)的电致发光,实现了(0.335,0.392)的CIE1931坐标,色温为2910 k和72的显色指数以及高最大外量子效率为8.7%。

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