材料科学
纳米复合材料
聚乙烯
高密度聚乙烯
聚合
热稳定性
复合材料
原位聚合
碳纳米管
结晶
化学工程
高分子化学
聚合物
工程类
作者
Cristal Cabrera Miranda,Odilia Pérez‐Camacho,Guillermo Martínez Colunga,Maricela García Zamora,María Teresa Rodríguez Hernández,Víctor E. Comparán-Padilla,Scott Collins
摘要
Abstract This study reports nanocomposite synthesis based on high‐density polyethylene with carbon nanotubes through in situ polymerization by coordination, and the use of an aluminohydride zirconocene/MAO system as a catalyst. Nanocomposites of linear polyethylene exhibit higher molar masses than pure high‐density polyethylene synthesized under similar conditions; where multiwalled carbon nanotubes (MWCNTs) acted as nucleating agents, shifting the crystallization temperature to higher values than neat high‐density polyethylene. Well‐dispersed MWCNTs in the HDPE matrices of the obtained nanocomposites are observed by SEM, where most of the nanocomposites showed an improvement in their thermal stability and electric conductivity, besides it is possible to obtain nanocomposites containing up to 41 wt% of nanofiller in the polymeric matrix. The aluminohydride complex n ‐BuCp 2 ZrH 3 AlH 2 , activated with MAO at Al/Zr ratios of 2000, produced homogeneous HDPE/MWCNT composites under in situ polymerization conditions, at 70°C and 2.9 bar of ethylene pressure, with minimal residual alumina in the HDPE matrix.
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