Applied Quantum Composites Research Center, Korea Institute of Science and Technology , Chudong-ro 92, Bongdong-eup, Wanju, Jeollabuk-do 55324, Republic of Korea.
Department of Advanced Chemicals & Engineering, Chonnam National University , 77, Yongbong-ro, Buk-gu, Gwangju 61186, Republic of Korea.
ACS Appl Mater Interfaces. 2017 Nov 22;9(46):40801-40809. doi: 10.1021/acsami.7b11485. Epub 2017 Nov 7.
The heat generated from electronic devices such as light emitting diodes (LEDs), batteries, and highly integrated transistors is one of the major causes obstructing the improvement of their performance and reliability. Herein, we report a comprehensive method to dissipate the generated heat to a vast area by using the new type of graphene-carbon-metal composite film as a heat sink. The unique porous graphene-carbon-metal composite film that consists of an electrospun carbon nanofiber with arc-graphene (Arc-G) fillers and an electrochemically deposited copper (Cu) layer showed not only high electrical and thermal conductivity but also high mechanical stability. Accordingly, superior thermal management of LED devices to that of conventional Cu plates and excellent resistance stability during the repeated 10 000 bending cycles has been achieved. The heat dissipation of LEDs has been enhanced by the high heat conduction in the composite film, heat convection in the air flow, and thermal radiation at low temperature in the porous carbon structure. This result reveals that the graphene-carbon-metal composite film is one of the most promising materials for a heat sink of electronic devices in modern electronics.
电子设备(如发光二极管(LED)、电池和高集成晶体管)产生的热量是阻碍其性能和可靠性提高的主要原因之一。在此,我们报告了一种综合方法,即使用新型石墨烯-碳-金属复合薄膜作为散热器来将产生的热量散发到更大的区域。这种独特的多孔石墨烯-碳-金属复合薄膜由电纺碳纤维和电弧石墨烯(Arc-G)填料以及电化学沉积的铜(Cu)层组成,不仅具有高导电性和导热性,而且具有高机械稳定性。因此,与传统的 Cu 板相比,LED 器件的热管理得到了显著改善,并且在重复的 10000 次弯曲循环中表现出优异的电阻稳定性。通过复合薄膜中的高热导率、空气流中的热对流以及多孔碳结构中的低温热辐射,提高了 LED 的散热性能。这一结果表明,石墨烯-碳-金属复合薄膜是现代电子设备散热器最有前途的材料之一。