Sun Meijiao, Wang Xiaoqiang, Ye Zhengyu, Chen Xiaodong, Xue Yuhua, Yang Guangzhi
School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China.
Taihu Jinzhang Science & Technology (Anhui) Co., Ltd., Anqing 246000, China.
Nanomaterials (Basel). 2022 Jan 24;12(3):367. doi: 10.3390/nano12030367.
With the large-scale application and high-speed operation of electronic equipment, the thermal diffusion problem presents an increasing requirement for effective heat dissipation materials. Herein, high thermal conductive graphite films were fabricated via the graphitization of polyimide (PI) films with different amounts of chemical catalytic reagent. The results showed that chemically imidized PI (CIPI) films exhibit a higher tensile strength, thermal stability, and imidization degree than that of purely thermally imidized PI (TIPI) films. The graphite films derived from CIPI films present a more complete crystal orientation and ordered arrangement. With only 0.72% chemical catalytic reagent, the graphitized CIPI film achieved a high thermal conductivity of 1767 W·m·K, which is much higher than that of graphited TIPI film (1331 W·m·K), with an increase of 32.8%. The high thermal conductivity is attributed to the large in-plane crystallite size and high crystal integrity. It is believed that the chemical imidization method prioritizes the preparation of high-quality PI films and helps graphite films achieve an excellent performance.
随着电子设备的大规模应用和高速运行,热扩散问题对有效的散热材料提出了越来越高的要求。在此,通过对不同量化学催化试剂的聚酰亚胺(PI)薄膜进行石墨化制备了高导热石墨薄膜。结果表明,化学亚胺化的PI(CIPI)薄膜比纯热亚胺化的PI(TIPI)薄膜具有更高的拉伸强度、热稳定性和亚胺化程度。由CIPI薄膜衍生的石墨薄膜呈现出更完整的晶体取向和有序排列。仅使用0.72%的化学催化试剂,石墨化的CIPI薄膜就实现了1767 W·m·K的高导热率,这比石墨化的TIPI薄膜(1331 W·m·K)高得多,提高了32.8%。高导热率归因于较大的面内微晶尺寸和高晶体完整性。据信,化学亚胺化方法有利于制备高质量的PI薄膜,并有助于石墨薄膜实现优异的性能。