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ITO glass polishing using carbon dioxide snow jet technique for organic light-emitting diodes

机译:使用二氧化碳喷雪技术对有机发光二极管进行ITO玻璃抛光

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Surface roughness of indium-tin-oxide (ITO) film plays a crucial role on the performance of organic lighting emitting devices (OLEDs). A set of polishing apparatus with carbon dioxide snow jet as an actuating medium is established, and the surface polishing of ITO glass are carried out by this equipment. The surface morphology of ITO film is measured by using an atomic force microscope (AFM) before and after polishing treatment. The results show that before polishing, the mean values of Ra, Rpv and the RMS of the ITO surface are 1.463, 46.87 and 2.726 nm, respectively. After polishing, the value decreases to 0.773 nm, 19.51 and 1.078nm. It indicates that the polishing method is effective to reduce the ITO surface roughness. Another merit of this polishing method is that the polishing process has a cleaning effect to the ITO glass surface The performance of OLED can be enhanced and the production cost of device can be reduced.
机译:氧化铟锡(ITO)膜的表面粗糙度对有机发光器件(OLED)的性能起着至关重要的作用。建立了一套以二氧化碳雪射流为驱动介质的抛光设备,并利用该设备对ITO玻璃进行了表面抛光。在抛光处理之前和之后,通过使用原子力显微镜(AFM)测量ITO膜的表面形态。结果表明,抛光前,ITO表面的Ra,Rpv和RMS平均值分别为1.463、46.87和2.726 nm。抛光后,该值减小到0.773nm,19.51和1.078nm。这表明抛光方法对于减小ITO表面粗糙度是有效的。该抛光方法的另一个优点是抛光过程对ITO玻璃表面具有清洁效果。可以提高OLED的性能,并可以降低器件的生产成本。

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