PP/MWCNTs composites: Effects of length of MWCNTs on isothermal crystallization behaviors, crystalline structure, and thermal stability

Author:

Lin Zheng-Ian1,Lou Ching-Wen234,Pan Yi-Jun5,Hsieh Chien-Teng6,Huang Chien-Lin1,Chen Chih-Kuang7,Lin Jia-Horng3891011

Affiliation:

1. Department of Fiber and Composite Materials, Feng Chia University, Taichung City, Taiwan

2. Graduate Institute of Biotechnology and Biomedical Engineering, Central Taiwan University of Science and Technology, Taichung City, Taiwan

3. Department of Chemistry and Chemical Engineering, Minjiang University, Fuzhou 350108

4. China School of Textiles, Tianjin Polytechnic University, Tianjin, China

5. Department of Materials and Textiles, Oriental Institute of Technology, New Taipei City, Taiwan

6. Department of Fashion Design and Merchandising, Shih Chien University Kaohsiung Campus, Kaohsiung City, Taiwan

7. Department of Fiber and Composite Materials, The Polymeric Biomaterials Lab, Feng Chia University, Taichung City, Taiwan

8. Department of Fiber and Composite Materials, Laboratory of Fiber Application and Manufacturing, Feng Chia University, Taichung City, Taiwan

9. Innovation Platform of Intelligent and Energy-Saving Textiles, School of Textiles, Tianjin Polytechnic University, Tianjin, China

10. School of Chinese Medicine, China Medical University, Taichung City, Taiwan

11. Department of Fashion Design, Asia University, Taichung City, Taiwan

Abstract

This study adopts the melt compounding method to prepare /mutli-walled carbon nanotubes composites. The effects of different lengths of the mutli-walled carbon nanotubes on the isothermal crystallization behaviors, crystalline structure, and thermal stability of the polypropylene/mutli-walled carbon nanotubes composites are examined. The PLM results show that the combination of mutli-walled carbon nanotubes prevents the growth of polypropylene spherulites, and thus results in a small size of spherulites. The differential scanning calorimetry results show that the short (S-) or long (L-) mutli-walled carbon nanotubes can function as the nucleating agent of polypropylene, which accelerates the crystallization rate of polypropylene. Avrami theory analyses indicate that the addition of short-mutli-walled carbon nanotubes particularly provides polypropylene/mutli-walled carbon nanotubes composites with a high crystallization rate. The X-ray diffraction results show that the combination of mutli-walled carbon nanotubes does not pertain to the crystal structure. The TGA test results show that long-mutli-walled carbon nanotubes outperform short -mutli-walled carbon nanotubes in improving the thermal stability of polypropylene, and both can significantly improve it.

Publisher

SAGE Publications

Subject

Materials Chemistry,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

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