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In-situ Thermally Curable Hyper-branched 10H-butylphenothiazine

机译:原位热固化超支化10H-丁基吩噻嗪

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摘要

A hyper branched 10-butylphenothiazine with in-situ thermally curable methacrylate (1,3,5-tris-[{10-Butyl-3-(4-(2-methyl-acryloyloxy)-phenyl)-7-yl-10H-phenothiazine}]-benzene, (tris-PTMA)) was synthesized successfully. From the TGA thermogram of tris-PTMA was thermally stable up to 336 °C. In the first heating scan of DSC thermogram, tris-PTMA showed glass transition temperature (T_g) at 140 °C and broad endothermic process in the region of 144-179 °C, which is thermally curing temperature. In the second heating process, T_g exhibited at 158.7 °C and endothermic process was not observed. Thermally cured tris-PTMA showed no big change in the UV-visible spectrum after washing with organic solvent such as methylene chloride, chloroform, toluene, indicating that thermally cured film was very good solvent resistance. Thermally cured tris-PTMA was electrochemically stable and the HOMO energy level of tris-PTMA was -5.54 eV. The maximum luminance efficiency of double layer structured polymer light-emitting diode based on in-situ thermally cured tris-PTMA was 0.685 cd/A at 16.0 V, which was higher than that of the device without thermally cured tris-PTMA (0.348 cd/A at 15.0 V).
机译:超支化10-丁基吩噻嗪与原位热固化甲基丙烯酸酯(1,3,5-三-[{10-丁基-3-(4-(2-甲基-丙烯酰氧基)-苯基)-7-基-10H-已成功合成了吩噻嗪}]-苯(tris-PTMA)。从TGA来看,tris-PTMA的热分析图在高达336°C的温度下均保持热稳定性。在DSC温度记录图的第一次加热扫描中,tris-PTMA显示了140°C的玻璃化转变温度(T_g),并且在144-179°C的范围内有较宽的吸热过程,这是热固化温度。在第二加热过程中,T_g在158.7℃下显示,并且未观察到吸热过程。用有机溶剂(例如二氯甲烷,氯仿,甲苯)洗涤后,热固化的tris-PTMA在紫外可见光谱中没有太大变化,表明热固化膜具有非常好的耐溶剂性。热固化的tris-PTMA是电化学稳定的,并且tris-PTMA的HOMO能级为-5.54 eV。基于原位热固化的tris-PTMA的双层结构聚合物发光二极管在16.0 V时的最大发光效率为0.685 cd / A,这比没有热固化的tris-PTMA的器件的最高发光效率(0.348 cd / A在15.0 V时)。

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