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http://dx.doi.org/10.1163/156855108X314788

Thermal Properties of Poly($\varepsilon$-Caprolactone)/Multiwalled Carbon Nanotubes Composites  

Kim, Hun-Sik (Department of Polymer Science and Engineering, Inha University)
Chae, Yun-Seok (Department of Polymer Science and Engineering, Inha University)
Choi, Jae-Hoon (Department of Polymer Science and Engineering, Inha University)
Yoon, Jin-San (Department of Polymer Science and Engineering, Inha University)
Jin, Hyoung-Joon (Department of Polymer Science and Engineering, Inha University)
Publication Information
Advanced Composite Materials / v.17, no.2, 2008 , pp. 157-166 More about this Journal
Abstract
In this study, multiwalled carbon nanotubes (MWCNTs) were compounded with the poly($\varepsilon$-caprolactone) (PCL) matrix at the solution state using chloroform. For homogeneous dispersion of MWCNTs in polymer matrix, oxygen-containing groups were introduced on the surface of MWCNTs. The mechanical properties of the PCL/MWCNTs composites were effectively increased due to the incorporation of MWCNTs. The composites were characterized using scanning electron microscopy in order to obtain information on the dispersion of MWCNT in the polymeric matrix. In case of 1.2 wt% of MWCNTs in the matrix, strength and modulus of the composite increased by 12.1% and 164.3%, respectively. In addition, the dispersion of MWCNTs in the PCL matrix resulted in substantial decrease of the electrical resistivity of the composites as the MWCNTs loading was increased from 0 to 2.0 wt%. Furthermore, thermal stability of the PCL and PCL/MWCNTs-COOH composites were investigated using the data acquired from the thermogravimetric analysis. The detailed kinetics of the thermal degradation of the composites was investigated by analyzing their thermal behavior at different heating rates in a nitrogen atmosphere. Activation energy of thermal degradation was determined by using the equations proposed by Kissinger and Flynn-Wall-Ozawa. The apparent activation energy of PCL/MWCNTs-COOH composite was considerably higher than that of neat PCL.
Keywords
Biodegradable; multiwalled carbon nanotubes; nanocomposites; poly($\varepsilon$-caprolactone); thermal stability;
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1 M. Kang, S. J. Myung and H. J. Jin, Polymer 47, 3961-3966 (2005)   DOI   ScienceOn
2 C. Wei, D. Srivastava and K. Cho, Nano Lett. 2, 647 (2002)   DOI   ScienceOn
3 J. Gao, M. E. Itkis, A. Yu, E. Bekyarova, B. Zhao and R. C. Haddon, J. Amer. Chem. Soc. 127, 3847-3854 (2005)   DOI   ScienceOn
4 H. E. Kissinger, Anal. Chem. 29, 1702-1706 (1957)   DOI
5 R. A. Jain, Biomaterials 21, 2475-2490 (2000)   DOI   ScienceOn
6 S. R. C. Vivekchand, L. Sudheendra, M. Sandeep, A. Govindaraj and C. N. R. J. Rao, Nanosci. Nanotechnol. 2, 631-635 (2002)   DOI   ScienceOn
7 M. S. Taylor, A. U. Daniels, K. P. Andriano and J. Heller, J. Appl. Biomater. 5, 151-157 (1994)   DOI   ScienceOn
8 M. Malinconico, B. Immirzi, S. Massenti, F. P. La Mantia, P. Mormile and L. Petti, J. Mater. Sci. 37, 4973-4978 (2002)   DOI   ScienceOn
9 Y. Ikada and H. Tsuji, Macromol. Rapid Commun. 21, 117-132 (2000)   DOI   ScienceOn
10 G. Sivalingam, S. P. Vijayalakshmi and G. Madras, Indian Engng Chem. Res. 43, 7702-7709 (2004)   DOI   ScienceOn
11 H. S. Kim, B. H. Park, J. S. Yoon and H. J. Jin, Eur. Polym. J. 43, 1729-1735 (2007)   DOI   ScienceOn
12 G. X. Chen, H. S. Kim, B. H. Park and J. S. Yoon, Carbon 44, 3348-3352 (2006)   DOI   ScienceOn
13 H. Kong, C. Gao and D. Yan, Macromolecules 37, 4022-4030 (2004)   DOI   ScienceOn
14 T. G. Park, S. Cohen and R. Langer, Macromolecules 25, 116-122 (1992)   DOI
15 J. H. Flynn and L. A. Wall, J. Polym. Sci. Part B, Polym. Letts 4, 323-328 (1966)   DOI
16 T. Ozawa, Bull. Chem. Soc. Japan 38, 1881-1886 (1965)   DOI
17 H. J. Jin, M. O. Hwang, J. S. Yoon, K. H. Lee, I. J. Chin and M. N. Kim, Macromol. Res. 13, 73-79 (2005)   과학기술학회마을   DOI
18 G. X. Chen, H. S. Kim, B. H. Park and J. S. Yoon, Polymer 47, 4760-4767 (2006)   DOI   ScienceOn
19 P. Potschke, A. R. Bhattacharyya and A. Janke, Polymer 44, 8061-8069 (2003)   DOI   ScienceOn
20 S. R. C. Vivekchand, L. Sudheendra, M. Sandeep, A. Govindaraj and C. N. R. J. Rao, Nanosci. Nanotechnol. 2, 631-651 (2002)   DOI   ScienceOn
21 H. S. Kim, B. H. Park, J. S. Yoon and H. J. Jin, Key Engng Mater. 326-328, 1785-1788 (2006)   DOI