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Plasma-polymerized C-60-coated CNT interlayer with physical and chemical functions for lithium-sulfur batteries

机译:等离子体聚合的C-60涂层CNT中间层,具有用于锂 - 硫电池的物理和化学功能

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The electrochemical application of plasma-induced polymerized fullerene (PC60), wherein C-60-derived radicals play physical and chemical functions, representing an important frontier in fullerene derivatives. We prepared a dual-functional interlayer of a gradationally PC60-coated carbon nanotube (CNT) matrix, where the population of C-60-originating carbon moieties decreased linearly across the CNT@PC60 from the separator to the sulfur electrode in a lithium-sulfur battery (LSB). The three-dimensional CNT@PC60 interlayer acted as both a physical ionic shield, impeding the shuttle effect, and a catalytic immobilizer, enhancing the kinetics of sulfur conversion. The synergistic effectiveness of the dual perm-selective CNT@PC60 interlayers in confining polysulfide species enabled delivery by the LSB with a high specific capacity of 829 mAh g(-1) and an ultra-low decay rate of 0.066% per cycle over 400 cycles at 5C. The role of PC60 in this superior electrochemical performance is the different physical and chemical characteristics of the ends of the interlayer. The PC60-rich side acts as a physical barrier with a mean pore size of 0.7 nm, which enables the penetration of lithium ions only without polysulfide intrusion. Meanwhile, the PC60-poor side formed a catalytic immobilizer because of its higher chemical functionalized degree.
机译:等离子体诱导的聚合富勒烯(PC60)的电化学应用,其中C-60衍生的自由基起着物理和化学功能,代表富勒烯衍生物的重要前沿。我们制备了一种渐变的PC60涂覆的碳纳米管(CNT)基质的双功能性层间,其中C-60致碳部分的群体从CNT @ PC60从分离器到锂 - 硫中的硫电极线性下降电池(LSB)。三维CNT @ PC60中间层用作物理离子屏蔽,阻碍了梭效果和催化固定剂,增强了硫转化率的动力学。双渗透性CNT @ PC60中间层的协同效能在限制多硫化物物种中,LSB使得具有829mAhg(-1)的高特定容量的递送,每循环超过400个循环的超低衰减率为0.066%在5℃。 PC60在这种卓越的电化学性能中的作用是中间层末端的不同物理和化学特性。富含PC60的侧面作为物理屏障,平均孔径为0.7nm,其能够仅在没有多硫化物侵入的情况下渗透锂离子。同时,PC60侧侧形成催化固定剂,因为其化学官能化程度较高。

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