聚烯烃
碳化
超级电容器
炭黑
催化作用
材料科学
碳纳米管
聚乙烯
聚丙烯
聚苯乙烯
化学工程
碳纤维
脱氢
热解
聚合物
有机化学
纳米技术
化学
复合材料
电极
电容
天然橡胶
复合数
物理化学
工程类
扫描电子显微镜
图层(电子)
作者
Xin Wen,Xuecheng Chen,Na Tian,Jiang Gong,Jie Liu,Mark H. Rümmeli,Paul K. Chu,Ewa Mijiwska,Tao Tang
摘要
The catalytic carbonization of polyolefin materials to synthesize carbon nanotubes (CNTs) is a promising strategy for the processing and recycling of plastic wastes, but this approach is generally limited due to the selectivity of catalysts and the difficulties in separating the polyolefin mixture. In this study, the influence of nanosized carbon black (CB) and Ni2O3 as a novel combined catalyst system on catalyzing carbonization of polypropylene (PP), polyethylene (PE), polystyrene (PS) and their blends was investigated. We showed that this combination was efficient to promote the carbonization of these polymers to produce CNTs with high yields and of good quality. Catalytic pyrolysis and model carbonization experiments indicated that the carbonization mechanism was attributed to the synergistic effect of the combined catalysts rendered by CB and Ni2O3: CB catalyzed the degradation of PP, PE, and PS to selectively produce more aromatic compounds, which were subsequently dehydrogenated and reassembled into CNTs via the catalytic action of CB together with Ni particles. Moreover, the performance of the synthesized CNTs as the electrode of supercapacitor was investigated. The supercapacitor displayed a high specific capacitance as compared to supercapacitors using commercial CNTs and CB. This difference was attributed to the relatively larger specific surface areas of our synthetic CNTs and their more oxygen-containing groups.
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