Modifying Polyvinylidene Chloride Resin with Fluorine Monomer and Cross‐Linking Monomers

Author:

Gao Fengjun1ORCID,Zhang Zhifeng2,Song Qianqian1,Abo‐Dief Hala M.3,Alzahrani Eman4,Wang Shouyang5,Liu Yan1,Shao Qian1,Yang Jing1,Guo Zhanhu67,El‐Bahy Zeinhom M.8,Ge Ruixiang1

Affiliation:

1. College of Chemical and Biological Engineering Shandong University of Science and Technology Qingdao 266590 China

2. Shandong Xinglu Chemical Co., Ltd Zibo 255411 China

3. Department of Science and Technology University College‐Ranyah Taif University P.O. Box 11099 Taif 21944 Saudi Arabia

4. Department of Chemistry College of Science Taif University P.O. Box 11099 Taif 21944 Saudi Arabia

5. Shandong Xinglu Eco‐Friendly New Materials Co., Ltd Zibo 255411 China

6. Integrated Composites Laboratory (ICL), Department of Mechanical and Construction Engineering Northumbria University Newcastle Upon Tyne NE1 8ST United Kingdom

7. College of Materials Science and Engineering Taiyuan University of Science and Technology Taiyuan 030024 China

8. Department of Chemistry Faculty of Science Al‐Azhar University Nasr City Cairo 11884 Egypt

Abstract

AbstractModified polyvinylidene chloride (PVDC) resin was prepared using octafluoropentyl methacrylate and trimethylolpropane trimethacrylate as modifying monomers through seeded emulsion polymerization. The successful incorporation of octafluoropentyl methacrylate into the PVDC resin was confirmed by Fourier transform infrared spectroscopy (FTIR) and X‐ray photoelectron spectroscopy (XPS) analyses. Scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS) and XPS were utilized to investigate the element distribution in the modified monomer emulsion and the mechanism of monomer modification. The results demonstrated that the fluorine monomer was reacted in the resin, and mainly concentrated on the surface of the resin. The addition of octafluoropentyl methacrylate and trimethylolpropane trimethacrylate improved the water resistance of the resin. Compared to unmodified PVDC resin, the contact angle of the modified PVDC resin increased from 89.46° to 109.51°, and the water resistance at room temperature increased from 120 to 500 h. Furthermore, the modified resin exhibited excellent mechanical properties, thermal stability, and storage stability.

Publisher

Wiley

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