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Fabricating high thermal conductivity rGO/polyimide nanocomposite films via a freeze-drying approach

机译:通过冷冻干燥方法制造高导热率rgo /聚酰亚胺纳米复合膜

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摘要

The preparation of polymeric composite materials with low filler content as well as high thermal conductivity has been an important subject for the field of polymer material research. During our recent investigation on polyimide (PI), it was found that poly(amic acid) (PAA) solution (in dimethylacetamide, DMAc) could crystallize at low temperature. When adding reduced graphene oxide (rGO) as the thermal conductive fillers in the PAA solution, it was also found that the crystallization process of PAA would impel the rGO to rearrange in order and form an aligned thermal conductive network. To retain the rGO network structure, the freeze-drying technique was used to remove the solvent. Subsequently, through a thermal imidization process the final rGO/PI films containing a 3D rGO network could be obtained. The PI composite films retain good flexibility, excellent thermal stability, and exhibit excellent thermal conductivity. When the content of rGO added is 8 wt%, the thermal conductivity of the rGO/PI film can reach a high value of 2.78 W m(-1) K-1, which is about 15.4 times that of neat PI and 5.5 times that of the rGO/PI composite film prepared by the conventional two-step routine with the same content of rGO.
机译:具有低填料含量的聚合物复合材料以及高导热率的聚合物复合材料是聚合物材料研究领域的重要主题。在我们最近对聚酰亚胺(PI)的研究期间,发现聚(氨基酸)(PAA)溶液(在二甲基乙酰胺,DMAC中)可以在低温下结晶。当加入PAA溶液中的导热填料的氧化石墨烯(RGO)时,也发现PAA的结晶过程将旨在按顺序重新排列并形成对准的导热网络。为了保留RGO网络结构,使用冷冻干燥技术除去溶剂。随后,通过热酰亚胺化过程,可以获得包含3D RGO网络的最终RGO / PI膜。 PI复合膜保持良好的柔韧性,优异的热稳定性,并且具有出色的导热性。当添加的Rgo的含量为8wt%时,RGO / Pi膜的导热率可以达到2.78WM(-1)K-1的高值,这是整洁Pi的约15.4倍和5.5倍通过常规的两步常规制备的RGO / PI复合膜,具有相同的RGO含量。

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  • 来源
    《RSC Advances》 |2018年第39期|共8页
  • 作者单位

    Sun Yat Sen Univ Guangdong Engn Technol Res Ctr High Performance O State Key Lab Optoelect Mat &

    Technol PCFM Lab GD HPPC Lab Mat Sci Inst Sch Chem Guangzhou 510275 Guangdong Peoples R China;

    Sun Yat Sen Univ Guangdong Engn Technol Res Ctr High Performance O State Key Lab Optoelect Mat &

    Technol PCFM Lab GD HPPC Lab Mat Sci Inst Sch Chem Guangzhou 510275 Guangdong Peoples R China;

    Sun Yat Sen Univ Guangdong Engn Technol Res Ctr High Performance O State Key Lab Optoelect Mat &

    Technol PCFM Lab GD HPPC Lab Mat Sci Inst Sch Chem Guangzhou 510275 Guangdong Peoples R China;

    Sun Yat Sen Univ Guangdong Engn Technol Res Ctr High Performance O State Key Lab Optoelect Mat &

    Technol PCFM Lab GD HPPC Lab Mat Sci Inst Sch Chem Guangzhou 510275 Guangdong Peoples R China;

    Sun Yat Sen Univ Guangdong Engn Technol Res Ctr High Performance O State Key Lab Optoelect Mat &

    Technol PCFM Lab GD HPPC Lab Mat Sci Inst Sch Chem Guangzhou 510275 Guangdong Peoples R China;

    Sun Yat Sen Univ Guangdong Engn Technol Res Ctr High Performance O State Key Lab Optoelect Mat &

    Technol PCFM Lab GD HPPC Lab Mat Sci Inst Sch Chem Guangzhou 510275 Guangdong Peoples R China;

    Sun Yat Sen Univ Guangdong Engn Technol Res Ctr High Performance O State Key Lab Optoelect Mat &

    Technol PCFM Lab GD HPPC Lab Mat Sci Inst Sch Chem Guangzhou 510275 Guangdong Peoples R China;

    Sun Yat Sen Univ Guangdong Engn Technol Res Ctr High Performance O State Key Lab Optoelect Mat &

    Technol PCFM Lab GD HPPC Lab Mat Sci Inst Sch Chem Guangzhou 510275 Guangdong Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;
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