详细信息
Preparation of multi-walled carbon nanotubes and its application as flame retardant for polypropylene ( SCI-EXPANDED收录 EI收录)
文献类型:期刊文献
英文题名:Preparation of multi-walled carbon nanotubes and its application as flame retardant for polypropylene
作者:Shen, Yinlong[1];Gong, Weiguang[1];Xu, Yuanyuan[1];Zheng, Baicun[1]
机构:[1]E China Univ Sci & Technol, Res & Dev Ctr Sports Mat, Shanghai 200237, Peoples R China
年份:2015
卷号:10
期号:11
起止页码:625
外文期刊名:MICRO & NANO LETTERS
收录:;EI(收录号:20154801603506);WOS:【SCI-EXPANDED(收录号:WOS:000364829100005)】;
语种:英文
外文关键词:multi-wall carbon nanotubes; flame retardants; filled polymers; nickel compounds; catalysts; X-ray diffraction; atomic emission spectroscopy; transmission electron microscopy; catalysis; thermal stability; nanocomposites; nanofabrication; multiwalled carbon nanotubes; flame retardant; polypropylene; NiO catalyst; Fe-pillared montmorillonite; conventional impregnation method; physicochemical properties; Ni catalyst; X-ray diffraction; inductively coupled plasma-atomic emission spectrometry; transmission electron microscopy; organic montmorillonite; hydrocarbons; thermal stability; flame retardancy; thermogravimetry analysis; cone data; PP-MWCNT nanocomposite; high degradation temperature; heat release rate; smoke production rate
摘要:NiO catalyst supported on Fe-pillared montmorillonite (5-15 wt% Ni) was prepared via a simple conventional impregnation method. The physicochemical properties of the Ni catalyst were characterised by X-ray diffraction, inductively coupled plasma-atomic emission spectrometry and transmission electron microscopy. The Ni catalyst, together with organic montmorillonite (OMMT), was employed to prepare multi-walled carbon nanotubes (MWCNTs) by using polypropylene (PP) as a precursor. An increase in Ni loading of the catalyst led to a significant increase in the yield of MWCNTs at the expense of a slight decline in quality of the obtained MWCNTs. Moreover, OMMT altered the degradation process of PP, which resulted in a much higher fraction of light hydrocarbons in degradation products. As such, a substantial increase in the yield of MWCNTs was attained. In addition, the obtained MWCNTs were used as flame retardant for PP, and significantly enhanced thermal stability and flame retardancy according to thermogravimetry analysis and cone data, respectively. PP/MWCNTs nanocomposite exhibited higher degradation temperature, longer ignition time, much lower heat release rate and smoke production rate. This work offers an efficient Ni catalyst to convert PP into MWCNTs which could be applied as flame retardant for polymers.
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