Wang Chunbo, Cong Bing, Zhao Junyu, Zhao Xiaogang, Wang Daming, Zhou Hongwei, Chen Chunhai
Key Laboratory of High Performance Plastics (Jilin University), Ministry of Education, National & Local Joint Engineering Laboratory for Synthesis Technology of High Performance Polymer, College of Chemistry, Jilin University Changchun 130012 P. R. China
RSC Adv. 2020 Apr 2;10(23):13517-13524. doi: 10.1039/d0ra00449a. eCollection 2020 Apr 1.
Herein, MWCNT-graft-polyimides (MWCNT--PIs) were prepared by the grafting method. Strengthening the interfacial interaction between MWCNTs and polyimide chains decreased their interfacial thermal resistance ( ). In contrast to the of 10% MWCNT/PIs, the of 10% MWCNT--PI decreased by 16.7%. Hence, MWCNT--PIs possessed higher thermal conductivity than MWCNT/polyimides (MWCNT/PIs). Meanwhile, the values of all the samples (MWCNT/PIs and MWCNT--PIs) were greater than 399 °C (by DMA). Compared with MWCNT/PIs, 5% and 10% MWCNT--PIs showed enhancement in thermal stability in air. The storage modulus retentions were greater than 63% at 200 °C and 45% at 300 °C. Also, 5% and 10% MWCNT--PIs maintained the high tensile strength of pure PI, and the tensile modulus increased up to 2.59 GPa on increasing the loading amount of MWCNTs. This study sheds light on improving the thermal conductivity of polyimides effectively at relatively low loadings.
在此,通过接枝法制备了多壁碳纳米管接枝聚酰亚胺(MWCNT-PIs)。增强多壁碳纳米管与聚酰亚胺链之间的界面相互作用降低了它们的界面热阻( )。与10%MWCNT/PIs的 相比,10%MWCNT-PI的 降低了16.7%。因此,MWCNT-PIs比多壁碳纳米管/聚酰亚胺(MWCNT/PIs)具有更高的热导率。同时,所有样品(MWCNT/PIs和MWCNT-PIs)的 值均大于399℃(通过动态热机械分析)。与MWCNT/PIs相比,5%和10%MWCNT-PIs在空气中的热稳定性有所提高。在200℃时储能模量保留率大于63%,在300℃时大于45%。此外,5%和10%MWCNT-PIs保持了纯聚酰亚胺的高拉伸强度,并且随着多壁碳纳米管负载量的增加,拉伸模量增加到2.59 GPa。这项研究为在相对低负载量下有效提高聚酰亚胺的热导率提供了思路。