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Tri‐ammonium end functional polyethylene: facile synthesis and application as an intercalation agent
Authors:Yongjie Zhang  Xiaopei Li  Shuwei Wang  Jing Xu  Huayi Li
Affiliation:1. School of Textile and Material Engineering, Dalian Polytechnic University, Dalian, Liaoning, China;2. Instrumental Analysis Center, Dalian Polytechnic University, Dalian, Liaoning, China;3. Beijing National Laboratory of Molecular Sciences, CAS Key Laboratory of Engineering Plastics, Institute of Chemistry, Chinese Academy of Sciences, Beijing, China
Abstract:Organo‐modification of montmorillonite (MMT) is crucial for the promotion of a fine dispersion of MMT into an (often hydrophobic) polymer matrix. Ammonium‐terminated polymers are more efficient in modifying clay compared to small organic cations such as alkyl ammoniums or side functionalized polymers. Herein, tri‐amino end functional polyethylene (PE‐3 N) with low molecular weight was first synthesized via an efficient and robust epoxide ring‐opening reaction by treating epoxide‐terminated PE with diethylenetriamine. The chemical structure of PE‐3 N was unambitiously characterized by chromatographic and spectral methods. By reacting with excess HCl, PE‐3 N was subsequently converted to tri‐ammonium end functional polyethylene (PE‐3 N+), which serves as an intercalation agent of MMT. By adjusting the weight ratio of PE‐3 N+ to pristine MMT (RP/M) applied in the static melt intercalation process, correlations between the extent of exfoliation and RP/M were successfully established. XRD results revealed that complete exfoliation of MMT could be afforded with RP/M as low as 1, which is the lowest value ever reported for ammonium‐terminated polymers applied as intercalation agents. SEM micrographs showed that MMT sheets were swollen by PE‐3 N+, affirming the successful modification of MMT. The PE modified MMT obtained may find application in preparing high‐performance PE/MMT nanocomposites. © 2017 Society of Chemical Industry
Keywords:tri‐amino end functional polyethylene  tri‐ammonium end functional polyethylene  montmorillonite  intercalation
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