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热塑性聚酰亚胺纳米复合材料的热导率增强:使用六方纳米颗粒的影响。

Enhanced Thermal Conductivity of Thermoplastic Polyimide Nanocomposites: Effect of Using Hexagonal Nanoparticles.

作者信息

Nazarychev Victor M

机构信息

Branch of Petersburg Nuclear Physics Institute Named by B.P. Konstantinov of National Research Centre «Kurchatov Institute»-Institute of Macromolecular Compounds, Bolshoi, pr. 31 (V.O.), 199004 St. Petersburg, Russia.

出版信息

Polymers (Basel). 2024 Nov 21;16(23):3231. doi: 10.3390/polym16233231.

Abstract

Thermoplastic polyimides have garnered significant interest in the electronic and electrical industries owing to their performance characteristics. However, their relatively low thermal conductivity coefficients pose a challenge. To address this issue, this study focused on the properties of nanocomposites comprising two thermoplastic semicrystalline polyimides R-BAPB and BPDA-P3, one amorphous polyimide ULTEM, and hexagonal nanoparticles. Polyimide R-BAPB was synthesized based on 1,3-bis-(3',4-dicarboxyphenoxy)benzene (dianhydride R) and 4,4'-bis-(4'-aminophenoxy)biphenyl (BAPB diamine); polyimide BPDA-P3 was synthesized based on 3,3',4,4'-biphenyltetracarboxylic dianhydride (BPDA) and diamine 1,4-bis[4-(4-aminophenoxy)phenoxy]benzene (P3); and amorphous polyimide ULTEM was commercially produced by Sabic Innovative Plastics. Using microsecond-scale all-atom molecular dynamics simulations, the effects of incorporating hexagonal nanoparticles with enhanced thermal conductivity, such as graphene, graphene oxide, and boron nitride, on the structural and thermophysical characteristics of these materials were examined. The formation of stacked aggregates was found for graphene and hexagonal boron nitride nanoparticles. It was observed that graphene oxide nanoparticles exhibited a dispersion in polyimide binders that was higher than those in graphene and hexagonal boron nitride nanoparticles, leading to reduced translational mobility of polymer chains. Consequently, the decrease in polyimide chain mobility correlated with an increase in the glass transition temperature of the nanocomposites. Aggregates of nanoparticles formed a pathway for phonon transport, resulting in improved thermal conductivity in polyimide nanocomposites. An increase in the thermal conductivity coefficient of polyimide nanocomposites was observed when the concentration of graphene, graphene oxide, and hexagonal boron nitride nanofillers increased. The enhancement in thermal conductivity was found to be strongest when graphene nanoparticles were added.

摘要

热塑性聚酰亚胺因其性能特点在电子和电气行业引起了广泛关注。然而,它们相对较低的热导率系数构成了一项挑战。为解决这一问题,本研究聚焦于由两种热塑性半结晶聚酰亚胺R - BAPB和BPDA - P3、一种非晶态聚酰亚胺ULTEM以及六方纳米颗粒组成的纳米复合材料的性能。聚酰亚胺R - BAPB是基于1,3 - 双 -(3',4 - 二羧基苯氧基)苯(二酐R)和4,4' - 双 -(4' - 氨基苯氧基)联苯(BAPB二胺)合成的;聚酰亚胺BPDA - P3是基于3,3',4,4' - 联苯四甲酸二酐(BPDA)和二胺1,4 - 双[4 -(4 - 氨基苯氧基)苯氧基]苯(P3)合成的;非晶态聚酰亚胺ULTEM由沙特基础工业公司创新塑料部商业化生产。使用微秒级全原子分子动力学模拟,研究了掺入具有增强热导率的六方纳米颗粒(如石墨烯、氧化石墨烯和氮化硼)对这些材料的结构和热物理特性的影响。发现石墨烯和六方氮化硼纳米颗粒形成了堆叠聚集体。观察到氧化石墨烯纳米颗粒在聚酰亚胺粘合剂中的分散性高于石墨烯和六方氮化硼纳米颗粒,导致聚合物链的平移迁移率降低。因此,聚酰亚胺链迁移率的降低与纳米复合材料玻璃化转变温度的升高相关。纳米颗粒聚集体形成了声子传输通道,从而提高了聚酰亚胺纳米复合材料的热导率。当石墨烯、氧化石墨烯和六方氮化硼纳米填料的浓度增加时,观察到聚酰亚胺纳米复合材料的热导率系数增加。发现添加石墨烯纳米颗粒时热导率的增强最为显著。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe70/11644118/d35e64c9ef4c/polymers-16-03231-g001.jpg

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