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Fabrication of Lignin-Based Nano Carbon Film-Copper Foil Composite with Enhanced Thermal Conductivity

机译:具有增强的导热性的木质素基纳米碳膜-铜箔复合材料的制备

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摘要

Technical lignin from pulping, an aromatic polymer with ~59% carbon content, was employed to develop novel lignin-based nano carbon thin film (LCF)-copper foil composite films for thermal management applications. A highly graphitized, nanoscale LCF (~80–100 nm in thickness) was successfully deposited on both sides of copper foil by spin coating followed by annealing treatment at 1000 °C in an argon atmosphere. The conditions of annealing significantly impacted the morphology and graphitization of LCF and the thermal conductivity of LCF-copper foil composite films. The LCF-modified copper foil exhibited an enhanced thermal conductivity of 478 W m K at 333 K, which was 43% higher than the copper foil counterpart. The enhanced thermal conductivity of the composite films compared with that of the copper foil was characterized by thermal infrared imaging. The thermal properties of the copper foil enhanced by LCF reveals its potential applications in the thermal management of advanced electronic products and highlights the potential high-value utility of lignin, the waste of pulping.
机译:制浆中的工业木质素是一种碳含量约59%的芳香族聚合物,被用于开发新型的木质素基纳米碳薄膜(LCF)-铜箔复合膜,用于热管理应用。通过旋涂成功地将高度石墨化的纳米级LCF(厚度约80-100 nm)沉积在铜箔的两面上,然后在氩气中于1000°C进行退火处理。退火条件显着影响了LCF的形貌和石墨化以及LCF-铜箔复合膜的热导率。 LCF改性的铜箔在333 K时的导热系数提高了478 W m K,比铜箔的导热系数高43%。通过热红外成像表征了与铜箔相比,复合膜的导热性增强。 LCF增强了铜箔的热性能,揭示了其在先进电子产品的热管理中的潜在应用,并突出了木质素(制浆废料)的潜在高价值效用。

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