• Volume 29 Issue 2
    Aug.  2021
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    ZHAO Dafang, LI Xiaodong, ZHENG Chunman, HU Tianjiao. Production mechanism of polyaluminocarbosilane using aluminum acetylacetonate with polysilacarbosilane[J]. Chinese Journal of Engineering, 2007, 29(2): 130-134. doi: 10.13374/j.issn1001-053x.2007.02.032
    Citation: ZHAO Dafang, LI Xiaodong, ZHENG Chunman, HU Tianjiao. Production mechanism of polyaluminocarbosilane using aluminum acetylacetonate with polysilacarbosilane[J]. Chinese Journal of Engineering, 2007, 29(2): 130-134. doi: 10.13374/j.issn1001-053x.2007.02.032

    Production mechanism of polyaluminocarbosilane using aluminum acetylacetonate with polysilacarbosilane

    doi: 10.13374/j.issn1001-053x.2007.02.032
    • Received Date: 2006-10-08
    • Rev Recd Date: 2006-12-08
    • Available Online: 2021-08-16
    • Polyaluminocarbosilane (PACS) is a precursor of ultra-high-temperature-resistance Si-Al-C fiber. In order to get a desirable precursor of the fiber, polysilacarbosilane (PSCS) was used to react with aluminum acetylacetonate (Al(acac)3) to get PACS, the reaction process was traced by FTIR, GPC, 1H-NMR, 27Al-NMR and UV-Vis spectra, and the production mechanism was studied in detail. The result shows that PSCS is a kind of oligomers with Si-Si-Si and Si-C-Si bonds. There are two kinds of reactions during the whole process. One is Kumada rearrangement that Si-Si-Si bond translated into Si-C-Si bond, the other is Al(acac)3 with the silicon carbon compounds. The obtained PACS has a higher relative molecular mass and branching degree because of the cross linkage of Al(acac)3. The crosslink mainly occurs below 330℃ and above 400℃. In PACS, Al is in the state of Si-O-Al.

       

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