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A novel type of one-dimensional organic selenium-containing fiber with superior performance for lithium-selenium and sodium-selenium batteries

机译:一种新型一维有机含硒纤维,具有优异的锂硒和钠硒电池性能

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摘要

A novel type of organic selenide fiber composed of carbonized polyacrylonitrile/selenium (CPAN/Se) has been synthesized by heating polyacrylonitrile-selenium (PAN-Se) fibers via the electrospinning technique at 600 degrees C. The Se molecules are confined by N-containing carbon ring structures in the form of energy-storing selenium side chains in the carbonized PAN matrix. This unique stable chemical structure with a conductive carbon skeleton connected to the selenium side chains and excellent mechanical stability can allow CPAN/Se composite cathodes to be charged and discharged in a low-cost carbonate-based electrolyte with excellent long cycle stability and quite good rate performance. The superior electrochemical performance of CPAN/Se electrodes is demonstrated in both lithium-ion and sodium-ion batteries, where they have delivered a high capacity of nearly 600 mA h g(-1) for 500 cycles in lithium-selenium (Li-Se) batteries and 410 mA h g(-1) for 300 cycles in sodium-selenium (Na-Se) batteries at 0.3 C, respectively.
机译:通过电纺丝技术将聚丙烯腈-硒(PAN-Se)纤维在600℃下加热,合成了一种由碳化聚丙烯腈/硒(CPAN / Se)构成的新型有机硒化纤维。硒分子被含氮限制碳化的PAN基体中储能硒侧链形式的碳环结构。这种独特的稳定化学结构具有与硒侧链相连的导电碳骨架,并具有出色的机械稳定性,可以使CPAN / Se复合阴极在低成本的碳酸盐基电解液中进行充电和放电,该电解液具有出色的长周期稳定性和良好的速率性能。 CPAN / Se电极的优异电化学性能在锂离子和钠离子电池中都得到了证明,在锂硒(Li-Se)中,它们在500个循环中提供了近600 mA hg(-1)的高容量电池和410 mA hg(-1)分别在0.3 C的钠硒(Na-Se)电池中循环300次。

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