4.7 Article

Cationic polymerization of butadiene using alkyl aluminum compounds as co-initiators: an efficient approach toward solid polybutadienes

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POLYMER CHEMISTRY
卷 13, 期 11, 页码 1596-1607

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d1py01684a

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  1. Institute of Ecology of Volga River Basin, Russian Academy of Science - Branch of Samara Federal Research Scientific Center, Russian Academy of Science [1021060107217-0-1.6.19]

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The cationic polymerization of butadiene using secondary alkyl chlorides and alkylaluminum compounds as initiators has been investigated. The results show that this initiating system can efficiently prepare fully soluble solid polybutadienes with reduced unsaturation and high glass transition and softening temperatures. The formation of EtAlCl2 during the reaction acts as a true co-initiator.
The cationic polymerization of butadiene using secondary alkyl chlorides (isopropyl chloride, 2-chlorobutane) as initiators and alkylaluminum compounds (Et2AlCl, EtAlCl2 and Et3Al) as co-initiators has been investigated. It was shown that secondary alkyl chlorides in conjunction with alkylaluminum compounds are efficient initiating systems for the preparation of fully soluble solid polybutadienes with reduced unsaturation (40-46 mol%) and high glass transition (56-66 degrees C) and softening (138-184 degrees C) temperatures. The cationic polymerization of butadiene with (PrCl)-Pr-i/Et3Al and (PrCl)-Pr-i/Et2AlCl initiating systems is characterized by an induction period which is consistent with the in situ formation of EtAlCl2, a true co-initiator of the polymerization. According to 1D and 2D NMR spectroscopy, the synthesized polybutadienes possessed isopropyl or sec-butyl groups connected with trans-1,4 structures as head groups.

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