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Electrochemical activity of sulfur networks synthesized through RAFT polymerization

机译:RAFT聚合合成硫网络的电化学活性

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摘要

Novel results concerning the inverse vulcanization of sulfur using reversible addition-fragmentation chain transfer (RAFT) polymerization are here reported. It is shown that RAFT polymerization can be used to carry out this crosslinking process, with the additional possibility to extend the reaction time from a few minutes as with classical free radical polymerization (FRP) to several hours. Higher control on viscosity and processability of the synthesized networks, as well as, the implementation of semibatch feed policies during crosslinking are important advantages of the RAFT process here explored comparatively to the FRP inverse vulcanization. Using cyclic voltammetry, it was assessed the electrochemical activity of the synthesized sulfur-rich polymer networks. It is shown that the fundamental electrochemical activity of the elemental sulfur was preserved in the produced materials. Testing of electrochemical cells assembled with lithium in the anode and different sulfur based materials in the cathode, including the synthesized RAFT networks, is also shown. The results here presented highlight the new opportunities introduced by reversible-deactivation radical polymerization mechanisms on the control of the synthesis process and in the design of such advanced materials and show also that many potential derivatizing possibilities can be achieved. (c) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 43993.
机译:本文报道了有关使用可逆加成-断裂链转移(RAFT)聚合反硫化硫的新结果。结果表明,RAFT聚合可用于进行该交联过程,另外还有可能将反应时间从传统的自由基聚合(FRP)的几分钟延长到几个小时。相对于FRP反向硫化,RAFT工艺的重要优势是对合成网络的粘度和可加工性进行更高的控制,以及在交联过程中实施半间歇进料策略是重要的优势。使用循环伏安法,评估了合成的富硫聚合物网络的电化学活性。结果表明,在生产的材料中保留了元素硫的基本电化学活性。还显示了对电化学电池的组装过程的测试,这些电池在阳极中装有锂,在阴极中装有不同的硫基材料,包括合成的RAFT网络。此处给出的结果突出了可逆失活自由基聚合机制在合成过程的控制以及此类先进材料的设计中带来的新机遇,并且还表明可以实现许多潜在的衍生化可能性。 (c)2016 Wiley Periodicals,Inc. J. Appl。 Polym。科学2016,133,43993。

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