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Fabrication of surface modified graphene oxide/unsaturated polyester nanocomposites via in-situ polymerization: Comprehensive property enhancement

机译:通过原位聚合制备表面改性的氧化石墨烯/不饱和聚酯纳米复合材料:增强综合性能

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The constant urge to boost the versatility of unsaturated polyester (UP) in the burgeoning area of automotive and aircraft industries has shifted the focus on developing high performance UP based nanocomposites with remarkable thermal, mechanical, and electrical properties. The current work traverses through the innovative method to contrive functionalized graphene oxide (f-GO)/UP nanocomposites. Graphene oxide, synthesized from graphite using modified Hummers method, manifests into f-GO (GO-MAH and GO-NH2) via surface chemical functionalization. Different loadings of f-GO were assimilated within UP matrix through in-situ polymerization. The comprehensive properties of the nanocomposites enhance, despite addition of f-GO as low as 0.04 wt%, which itself gives a scrupulous vindication of proper dispersion of fillers and formation of exfoliated and intercalated nanostructures, with SEM images furnishing the inference of meticulous dispersion. The fabricated nanocomposites exhibit tensile strength augmentation by 75.2% for ultralow content of 0.08 wt% f-GO. Furthermore, the 0.10 wt% addition of f-GO within UP displays 53.8% increase in storage modulus and thermal decomposition temperature at 10% mass loss boosts by 70.3 degrees C, while the electrical conductivity surges by 10(9) S/m. The surface functionalized graphene oxide and their interaction with UP played a vital role in their property enhancement.
机译:在汽车和飞机工业的新兴领域,不断提高不饱和聚酯(UP)通用性的要求已将重点转移到开发具有显着热,机械和电性能的高性能UP基纳米复合材料上。当前的工作遍历了创新方法,以设计功能化氧化石墨烯(f-GO)/ UP纳米复合材料。使用改良的Hummers方法由石墨合成的氧化石墨烯通过表面化学官能化作用表现为f-GO(GO-MAH和GO-NH2)。通过原位聚合在UP基质中吸收了不同量的f-GO。尽管添加了低至0.04 wt%的f-GO,纳米复合材料的综合性能仍得到增强,这本身就证明了填料的适当分散以及脱落和嵌入的纳米结构的形成,SEM图像提供了精细分散的推断。对于0.08 wt%f-GO的超低含量,制成的纳米复合材料的拉伸强度提高了75.2%。此外,在UP中添加0.10 wt%的f-GO显示出53.8%的储能模量和55%的热分解温度增加了70.3摄氏度,而电导率上升了10(9)S / m。表面功能化的氧化石墨烯及其与UP的相互作用在其性能增强中起着至关重要的作用。

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