Preparation of collagen fiber/CaCO3 hybrid materials and their applications in synthetic paper
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  • 作者:Hu Zhou (1)
    Ruiping Xun (1)
    Zhihua Zhou (1)
    Qingquan Liu (1)
    Peng Wu (1)
    Kejian Wu (1)
  • 关键词:Collagen fiber ; CaCO3 ; Organic ; inorganic hybrid ; Thermal and hydrothermal stability ; Synthetic paper
  • 刊名:Fibers and Polymers
  • 出版年:2014
  • 出版时间:March 2014
  • 年:2014
  • 卷:15
  • 期:3
  • 页码:519-524
  • 全文大小:
  • 参考文献:1. J. Kanagaraj, K. C. Velappan, N. K. Chandra Babu, and S. Sadulla, / J. Sci. Ind. Res. India, 65, 541 (2006).
    2. H. Ozgunay, S. Colak, M. M. Mutlu, and F. Akyuz, / Pol. J. Environ. Stud., 16, 867 (2007).
    3. E. M. Brown, M. M. Taylor, and W. N. Marmer, / J. Am. Leather Chem. As., 91, 270 (1996).
    4. W. Friess, / Eur. J. Pharm. Biopharm., 45, 113 (1998). CrossRef
    5. C. H. Lee, A. Singla, and Y. Lee, / Int. J. Pharmaceut., 221, 1 (2001). CrossRef
    6. L. Cai, X. Liao, and B. Shi, / Ind. Eng. Chem. Res., 49, 3194 (2010). CrossRef
    7. R. Osorio, M. Yamauti, E. Osorio, M. E. Ruiz-Requena, D. Pashley, F. Tay, and M. Toledano, / Eur. J. Oral. Sci., 119, 79 (2011). CrossRef
    8. T. Toyoda, / U.S. Patent, 3765999 (1973).
    9. H. W. Huang, / E. P. Patent, 0773094 (1997).
    10. R. M. Santana and S. Manrich, / J. Appl. Polym. Sci., 114, 3420 (2009). CrossRef
    11. K. Li, H. G. Sun, and E. Q. Yin, / Adv. Mater. Res., 532, 161 (2012).
    12. A. C. Corrêa and C. R. de Santi, / Manrich, Macromol. Symp., 245, 611 (2006). CrossRef
    13. M. Debeljak, D. Gregor-Svetec, and R. Szentgy?rgyv?lgyi, / Acta Graphica, 21, 17 (2011).
    14. D. Deng, X. Liao, and B. Shi, / Chemsuschem, 1, 298 (2008). CrossRef
    15. L. R. Yao, H. Lin, and Y. Y. Chen, / J. Text. Res., 27, 105 (2006).
    16. H. Zhou, Y. Chen, H. Fan, H. Shi, Z. Luo, and B. Shi, / J. Membr. Sci., 318, 71 (2008). CrossRef
    17. H. Fan, B. Shi, Q. He, and B. Peng, / J. Soc. Leath. Tech. Ch., 88, 139 (2004).
    18. H. Fan, L. Li, B. Shi, Q. He, and B. Peng, / J. Am. Leather. Chem. As., 100, 22 (2005).
    19. H. Zhou, Y. Chen, H. Fan, H. Shi, Z. Luo, and B. Shi, / J. Appl. Polym. Sci., 109, 3002 (2008). CrossRef
    20. G. Xiao, X. Huang, X. Liao, and B. Shi, / J. Phys. Chem. C, 117, 9739 (2013). CrossRef
    21. S. Sindhu, S. Jegadesan, L. Hairong, P. K. Ajikumar, M. Vetrichelvan, and S. Valiyaveettil, / Adv. Funct. Mater., 17, 1698 (2007). CrossRef
    22. Q. Huang, C. Xiao, and X. Hu, / J. Appl. Polym. Sci., 123, 324 (2012). CrossRef
    23. L. H. Fu, J. Q. Cheng, and G. L. Lai, / Acta. Chim. Sinica., 63, 1626 (2005).
    24. B. B. Doyle, E. G. Bendit, and E. R. Blout, / Biopolymers, 14, 937 (1975). CrossRef
    25. B. Madhan, V. Subramanian, J. R. Rao, B. U. Nair, and T. Ramasami, / Int. J. Biol. Macromol., 37, 47 (2005). CrossRef
    26. A. J. Xie, Y. H. Shen, and S. Y. Zhang, / Chinese J. Inorg. Chem., 17, 603 (2001).
  • 作者单位:Hu Zhou (1)
    Ruiping Xun (1)
    Zhihua Zhou (1)
    Qingquan Liu (1)
    Peng Wu (1)
    Kejian Wu (1)

    1. Key Laboratory of Theoretical Chemistry and Molecular Simulation of Ministry of Education, School of Chemistry and Chemical Engineering, Hunan University of Science and Technology, Xiangtan City, 411201, China
  • ISSN:1875-0052
文摘
The collagen fiber/CaCO3 hybrid materials were successfully prepared via in situ organic-inorganic hybrid technique. The surface morphology, hybrid mechanism, thermal and hydrothermal stability of these materials were investigated, respectively. Scanning electron microscopy (SEM) analysis showed that the size scale and distribution of CaCO3 particles in collagen fiber relied on the concentration of CaCl2. When the CaCl2 was at low concentration, for example 6 wt%, the in-situ produced CaCO3 particles were distributed evenly around the collagen fiber, the particle size could be controlled in the range of 2- μm and no apparent coagulation of CaCO3 particles was found. Fourier transform infrared spectroscopy (FTIR) study revealed the interactions between the collagen fiber and CaCO3 particles. The water solubility test and TGA analysis indicated that the solubility of collagen fiber in hot water decreased significantly after hybridization with CaCO3 particles, whereas, the decomposition temperature was improved with increasing of the production of CaCO3 particles. Moreover, the hybrid materials were used in conjunction with polyurethane and CaCO3 powder to fabricate a novel synthetic paper. The result showed that the synthetic paper had good writing and printing.

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