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Improvement of InterfaceThermal Resistance for Surface-Mounted Ultraviolet Light-EmittingDiodes Using a Graphene Oxide Silicone Composite

机译:界面改进表面安装紫外线发光的热阻使用氧化石墨烯有机硅复合材料的二极管

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摘要

In this study, based on silicone composites with graphene oxide (GO) as a filler, a novel packaging strategy was proposed to reduce the interface thermal resistance of surface-mounted ultraviolet light-emitting diodes (UV-LEDs) and provide a potentially effective way for enhancing the long-term stability of devices. The 4 wt % GO-based composite showed an excellent performance in the thermal conductivity, and the interface thermal resistance was reduced by 34% after embedding the 4 wt % GO-based composite into the air gaps of bonding interfaces in the UV-LEDs, leading to a reduction of junction temperature by 1.2 °C under the working current of 1000 mA. Meanwhile, a decrease of thermal stress in bonding interfaces was obtained based on the finite element analysis. What is more, it was found that the lifetime of UV-LEDs with the proposed structure could be obviously improved. It is believed to provide a simple and effective approach for improving the performance of surface-mounted UV-LEDs.
机译:在这项研究中,以氧化石墨烯(GO)为填充剂的有机硅复合材料为基础,提出了一种新颖的包装策略,以降低表面安装的紫外线发光二极管(UV-LED)的界面热阻并提供潜在的有效方法用于增强设备的长期稳定性。 4%(重量)的GO-基复合材料表现出出色的导热性能,将4%(重量)的GO-基复合材料埋入UV-LEDs粘结界面的气隙中后,界面热阻降低了34%,从而在1000 mA的工作电流下将结温降低了1.2°C。同时,基于有限元分析,降低了粘结界面的热应力。此外,发现具有所提出的结构的UV-LED的寿命可以明显改善。相信提供了一种简单有效的方法来改善表面安装的UV-LED的性能。

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