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In situ prepared reduced graphene oxide/CoO nanowires mutually-supporting porous structure with enhanced lithium storage performance

机译:原位制备的还原型氧化石墨烯/ CoO纳米线相互支撑的多孔结构,具有增强的锂存储性能

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摘要

An efficient method is demonstrated to synthesize reduced graphene oxide/Co nanowires (rGO/CoO) mutually-supporting porous structure, which is in situ prepared by annealing self-assembled graphene oxide (GO)/Co(CO3)(0.5)(OH).0.11H(2)O nanowires composite in N-2 atmosphere. The CoO nanowires are uniformly and tightly anchored on the rGO sheet surface, preventing the aggregation of the CoO nanowires and the restacking of rGO sheets. As an anode material for lithium ion batteries (LIBs), rGO/CoO electrode displays excellent electrochemical performance including a high reversible capacity of 994 mA h g (1) even after 100 cycles with 96.3% capacity retention of the initial discharge capacity, super rate capability (718, 577, 504, 388 and 262 mA hg (1) 0.8, 3.2, 5, 7 and 10C, respectively,1C = 1 A g (1)) and extremely excellent cycling performance at high rates (621 mA h g I at 1C after 620 cycles; 520 mA h g (1) at 3C even after 750 cycles). (C) 2015 Elsevier Ltd. All rights reserved.
机译:证明了一种有效的方法来合成还原氧化石墨烯/ Co纳米线(rGO / CoO)相互支撑的多孔结构,该结构是通过对自组装氧化石墨烯(GO)/ Co(CO3)(0.5)(OH)进行退火而原位制备的在N-2气氛中合成的0.1.11H(2)O纳米线。 CoO纳米线均匀且紧密地锚固在rGO薄片表面上,从而防止了CoO纳米线的聚集和rGO薄片的重新堆叠。作为锂离子电池(LIB)的负极材料,rGO / CoO电极表现出出色的电化学性能,即使在100次循环后仍具有994 mA hg(1)的高可逆容量,并具有96.3%的初始放电容量,超倍率容量(718、577、504、388和262 mA hg(1)分别为0.8、3.2、5、7和10C,1C = 1 A g(1))和极高的循环性能(高速率621 mA hg I 620个循环后为1C;即使在750个循环后也为3C 520 mA hg(1)。 (C)2015 Elsevier Ltd.保留所有权利。

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