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Developed greener method based on MW implementation in manufacturing CNFs

机译:基于MW实现的CNFS制造的更环保的方法

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摘要

This study comes as the first trial that uses microwave (MW) in combination with assisted chemical vapour deposition (CVD) to generate homogeneous carbon nanofibers (CNFs) at short period thermal reaction. The outcomes confirmed that these materials are of highly-ordered pyrolitic graphite nature. CNFs were obtained having uniform diameters (80-150 nm) and long fibres (0.82-1.75 μm). SEM and TEM evaluations revealed relatively less damage in fractured surfaces and the TGA exhibited insignificant change of CNFs during thermal decomposition. The 'solid' CNFs showed clear properties as disorder, crystalline, and bent graphitic sheets. The as-prepared CNTs demonstrated good MW-absorption properties with superior performance which could be due to the combination of the dielectric-type absorption and the interference of multi-reflected MW. This enhancement gave 97% purity of the novel manufactured CNFs. Therefore, we recommend our greener nanoproducts for industries as energy, pharmaceutical, cosmetics, textile, sensors, electronics, vehicles, and both of quantum dots (QD) and fluorescent C-dots.
机译:本研究作为使用微波(MW)与辅助化学气相沉积(CVD)结合使用微波(CVD)的第一次试验,以在短时间内热反应下产生均匀的碳纳米纤维(CNF)。结果证实,这些材料具有高度有序的吡咯性石墨性质。获得具有均匀直径(80-150nm)和长纤维(0.82-1.75μm)的CNF。 SEM和TEM评估显示在裂缝表面的损伤较小,TGA在热分解过程中表现出CNF的微不足道的变化。 “固体”CNFS显示出清晰的性能作为病症,结晶和弯曲的石墨片。 AS制备的CNT具有良好的MW吸收性能,具有优异的性能,这可能是由于介电型吸收和多反射MW的干扰的组合。这种增强具有97%的新型制造的CNFS纯度。因此,我们建议我们更环保的纳米纳费育,作为能源,制药,化妆品,纺织,传感器,电子设备,车辆和量子点(QD)和荧光C点。

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