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Effect of Preparation Methods on the Tensile Morphology and Solar Energy Conversion Efficiency of RGO/PMMA Nanocomposites

机译:制备方法对RGO / PMMA纳米复合材料的拉伸形貌和太阳能转化效率的影响

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摘要

In this study, reduced graphene oxide (RGO)/polymethyl methacrylate (PMMA) nanocomposites were prepared by employing in situ polymerization and solution blending methods. In terms of mechanical properties, RGO loading increased the Young’s modulus but decreased the elongation at break for RGO/PMMA nanocomposites. Tensile strength for solution blended RGO/PMMA nanocomposites increased after adding 0.5 wt % RGO, which was attributed to the good dispersion of RGO in the nanocomposites as evidenced from SEM and TEM. Solar energy conversion efficiency measurement results showed that the optimum concentration of RGO in the RGO/PMMA nanocomposites was found to be 1.0 wt % in order to achieve the maximum solar energy conversion efficiency of 25%. In the present study, the solution blended nanocomposites exhibited better overall properties than in situ polymerized nanocomposites owing to the better dispersion of RGO in solution blending. These findings would contribute to future work in search of higher conversion efficiency using nanocomposites.
机译:在这项研究中,还原性氧化石墨烯(RGO)/聚甲基丙烯酸甲酯(PMMA)纳米复合材料是采用原位聚合和溶液共混方法制备的。在机械性能方面,RGO负载增加了RGO / PMMA纳米复合材料的杨氏模量,但降低了断裂伸长率。添加0.5 wt%的RGO后,溶液共混RGO / PMMA纳米复合材料的拉伸强度增加,这是由于RGO在纳米复合材料中的良好分散性所致(从SEM和TEM证明)。太阳能转化效率的测量结果表明,RGO / PMMA纳米复合材料中RGO的最佳浓度为1.0 wt%,以实现25%的最大太阳能转化效率。在本研究中,由于RGO在溶液共混中具有更好的分散性,因此溶液共混纳米复合材料比原位聚合纳米复合材料表现出更好的总体性能。这些发现将有助于今后使用纳米复合材料寻求更高转化效率的工作。

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