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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:一种新型的一维有机含硒纤维,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°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:通过电纺丝技术在600°C下加热聚丙烯腈-硒(PAN-Se)纤维,合成了一种新型的由碳化聚丙烯腈/硒(CPAN / Se)构成的有机硒化纤维。 Se分子被碳化的PAN基质中储能的硒侧链形式的含N碳环结构限制。这种独特的稳定化学结构具有连接至硒侧链的导电碳骨架和出色的机械稳定性,可以使CPAN / Se复合阴极在低成本的碳酸盐基电解质中进行充电和放电,该电解质具有出色的长循环稳定性和相当好的速率性能。 CPAN / Se电极在锂离子和钠离子电池中均表现出卓越的电化学性能,在锂硒(Li-Se)电池中,它们在500个循环中提供了近600 mA h g-1的高容量分别在0.3 C的钠-硒(Na-Se)电池中进行300次循环和410 mA h g-1循环。

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