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Temperature and Copper Concentration Effects on the Formation of Graphene-Encapsulated Copper Nanoparticles from Kraft Lignin

机译:温度和铜浓度对来自牛皮纸的石墨烯包封的铜纳米粒子的形成

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摘要

The effects of temperature and copper catalyst concentration on the formation of graphene-encapsulated copper nanoparticles (GECNs) were investigated by means of X-ray diffraction, Fourier transform infrared spectroscopy-attenuated total reflectance, and transmission electron microscopy. Results showed that higher amounts of copper atoms facilitated the growth of more graphene islands and formed smaller size GECNs. A copper catalyst facilitated the decomposition of lignin at the lowest temperature studied (600 °C). Increasing the temperature up to 1000 °C retarded the degradation process, while assisting the reconfiguration of the defective sites of the graphene layers, thus producing higher-quality GECNs.
机译:通过X射线衍射,傅里叶变换红外光谱衰减的总反射率和透射电子显微镜,研究了温度和铜催化剂浓度对石墨烯包封的铜纳米粒子(GECN)的形成。结果表明,较高量的铜原子促进了更多石墨烯岛的生长,并形成了较小的GECN。铜催化剂促进了在研究(600℃)的最低温度下木质素的分解。将温度提高到1000°C延迟降解过程,同时协助重新配置石墨烯层的缺陷位点,从而产生更高质量的GECN。

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