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使用离子液体降低生物基热塑性聚氨酯/石墨烯纳米复合材料的电渗流阈值。

Using an Ionic Liquid to Reduce the Electrical Percolation Threshold in Biobased Thermoplastic Polyurethane/Graphene Nanocomposites.

作者信息

Aranburu Nora, Otaegi Itziar, Guerrica-Echevarria Gonzalo

机构信息

POLYMAT and Polymer Science and Technology Department, Faculty of Chemistry, University of the Basque Country UPV/EHU, Paseo Manuel de Lardizabal 3, 20018 Donostia, Spain.

出版信息

Polymers (Basel). 2019 Mar 6;11(3):435. doi: 10.3390/polym11030435.

Abstract

Biobased thermoplastic polyurethane (bTPU)/unmodified graphene (GR) nanocomposites (NCs) were obtained by melt-mixing in a lab-scaled conventional twin-screw extruder. Alternatively, GR was also modified with an ionic liquid (GR-IL) using a simple preparation method with the aim of improving the dispersion level. XRD diffractograms indicated a minor presence of well-ordered structures in both bTPU/GR and bTPU/GR-IL NCs, which also showed, as observed by TEM, nonuniform dispersion. Electrical conductivity measurements pointed to an improved dispersion level when GR was modified with the IL, because the bTPU/GR-IL NCs showed a significantly lower electrical percolation threshold (1.99 wt%) than the bTPU/GR NCs (3.21 wt%), as well as higher conductivity values. Young's modulus increased upon the addition of the GR (by 65% with 4 wt%), as did the yield strength, while the ductile nature of the bTPU matrix maintained in all the compositions, with elongation at break values above 200%. This positive effect on the mechanical properties caused by the addition of GR maintained or slightly increased when GR-IL was used, pointing to the success of this method of modifying the nanofiller to obtain bTPU/GR NCs.

摘要

通过在实验室规模的传统双螺杆挤出机中熔融共混,制备了生物基热塑性聚氨酯(bTPU)/未改性石墨烯(GR)纳米复合材料(NCs)。另外,还采用一种简单的制备方法用离子液体对GR进行改性(GR-IL),以提高分散程度。X射线衍射图表明,在bTPU/GR和bTPU/GR-IL纳米复合材料中均存在少量有序结构,透射电镜观察也显示其分散不均匀。电导率测量表明,用离子液体改性GR时分散程度得到改善,因为bTPU/GR-IL纳米复合材料的电渗流阈值(1.99 wt%)明显低于bTPU/GR纳米复合材料(3.21 wt%),且电导率值更高。添加GR后,杨氏模量增加(4 wt%时增加65%),屈服强度也增加,而bTPU基体在所有组合物中均保持韧性,断裂伸长率值高于200%。当使用GR-IL时,添加GR对机械性能的这种积极影响得以保持或略有增加,这表明这种改性纳米填料以获得bTPU/GR纳米复合材料的方法是成功的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cac8/6473422/7eaa46462aa1/polymers-11-00435-g001.jpg

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