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Improved electrochemical performance of lithium/sodium perylene-3,4,9,10-tetracarboxylate as an anode material for secondary rechargeable batteries

机译:锂/ per 3,4,9,10-四羧酸钠/钠作为二次充电电池的负极材料的电化学性能得到改善

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摘要

Lithium perylene-3,4,9,10-tetracarboxylate (Li-PTCA) is synthesized starting from perylene-3,4,9,10-tetracaboxylicacid-dianhydride (PTCDA). In Li-PTCA, the carbonyl group of the carboxylate redox centers exhibits excellent electrochemical reversibility at an average voltage of 1.2 V with respect to Li+/Li. We have improved the rate capability and capacity of Li-PTCA based electrode by in-situ coating of Li-PTCA with conducting acetylene black carbon. We have demonstrated enhanced rate capability, improved capacity and reduced charge transfer resistance in the in-situ carbon coated electrode vis a vis electrode fabricated by conventional method. A capacity of 120 mAh g(-1) is observed at the end of the 50 cycles, at 240 mA g(-1). Ex-situ XRD studies have revealed that the crystal structure is robust and is stable for reversible insertion of Li. In-situ carbon coated Na-PTCA shows better reversibility and high capacity retention even after 100 cycles when cycled using current densities as high as 500 mA g(-1). Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:per 3,4,9,10-四羧酸锂(Li-PTCA)是从ylene 3,4,9,10-四羧酸二酐(PTCDA)合成的。在Li-PTCA中,相对于Li + / Li,羧酸盐氧化还原中心的羰基在1.2V的平均电压下表现出优异的电化学可逆性。通过使用导电乙炔黑炭原位涂覆Li-PTCA,我们提高了Li-PTCA基电极的倍率能力和容量。我们已经证明,相对于通过常规方法制造的电极,原位碳涂覆的电极具有增强的速率能力,改进的容量和降低的电荷转移电阻。在50个循环结束时,在240 mA g(-1)下观察到120 mAh g(-1)的容量。异位XRD研究表明,该晶体结构坚固且稳定,可逆地插入Li。使用电流密度高达500 mA g(-1)循环100次循环后,原位碳涂层Na-PTCA表现出更好的可逆性和高容量保持率。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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