Research Progress of Synthetizing Polydichlorophazene

Article Preview

Abstract:

Polydichlorophazene is a colloidal ivory inorganic polymer with high elastic and an important intermediate that synthetizes polyphosphazene derivatives. By means of substituting the chloridion on polydichlorophazene by nucleophilic group, new functional materials with various different performance are fromed. The paper present research progress of synthetizing polydichlor- ophazene methods which are consist of two steps: the first step is synthesis of hexachlorocyclo- triphosphazene, the second step is synthesis of polydichlorophazene.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 634-638)

Pages:

2019-2022

Citation:

Online since:

January 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] H. R. Allcock, Chemical Reviews, 1972, 72(4): 315-356.

Google Scholar

[2] Jensen JO, Journal of Molecular Structure-Theochem, 2005, 729(3): 229-234.

Google Scholar

[3] Tong Xu, Qinghui Mao, Zhipin Mao, New Chemical Materials, 2010, 38(3): 22-25(in Chinese).

Google Scholar

[4] E. W. Ainscough, A. M. Brodie, G. B. Jameson and so on, Polyhedron, 2007, 26(2): 460-471.

Google Scholar

[5] P. Niederhafner, J. Sebestik, J. Jezek, Journal of Peptide Science, 2005, 11(12): 757-788.

Google Scholar

[6] Lihua Zhu, Fine and Specialty Chemicals, 2003, (17): 19-20(in Chinese).

Google Scholar

[7] Lingshen Leng, Shi1in Zhou, Science Technology and Engineering, 2012, 12(6): 1358-1360(in Chinese).

Google Scholar

[8] Hongxia Yan, Rongchang Ning, Xiaoyan Ma, Chinese Journal of Applied Chemistry, 2001, 18(2):163~164(in Chinese).

Google Scholar

[9] Kinoshita, T. Ogata, Y. Suzue and so on, U.S. Patent 4,256,715.(1981)

Google Scholar

[10] Li, M.Hsueh, U.S. Patent 4,537,755.(1985)

Google Scholar

[11] Wenlong Zhang, Guixia Song, Yajie Dai, et a1, Plastics Additives, 2011, (4): 24-27(in Chinese).

Google Scholar

[12] A. N. Mujumdar, G. Y. Scott, L. M. Robert and so on, Macromolecules, 1990, 23(1): 14-21.

Google Scholar

[13] R. D. Jaeder, M. Gleria, Progress in Polymer Science, 1998, 23(2): l79-276.

Google Scholar

[14] M. K.Potts, G. L.Hagauer, M. S. Sennett and so on, American Chemical Society, Polymer Preprints, Division of Polymer Chemistry, 1987, 28(2): 324-325.

Google Scholar

[15] M. K.Potts, G. L.Hagnauer, S M. S.ennett, Macromolecules 1989, 22(11): 4235-4239.

Google Scholar

[16] H. R.Allcock, J. M.Nelson, R. Prange and so on, Macromolecules, 1999, 32(18): 5736-5743.

Google Scholar

[17] Qing Song, Weizhong Yuan, Jian Li and so on, Journal of Shanghai Jiaotong University, 2005, 39(11): 1824-1827(in Chinese).

Google Scholar

[18] Yufeng Qu, Xiaodong Jiang, Linhon Cao,et a1, Chinese Journal of Synthetic Chemistry, 2012, 20(1): 98-100(in Chinese).

Google Scholar