首页> 外文期刊>ACS applied materials & interfaces >Exfoliated Graphene Oxide/MoO2 Composites as Anode Materials in Lithium-Ion Batteries: An Insight into Intercalation of Li and Conversion Mechanism of MoO2
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Exfoliated Graphene Oxide/MoO2 Composites as Anode Materials in Lithium-Ion Batteries: An Insight into Intercalation of Li and Conversion Mechanism of MoO2

机译:脱落的氧化石墨烯/ MoO2复合材料作为锂离子电池中的负极材料:锂的嵌入和MoO2转化机理的见解

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摘要

Exfoliated graphene oxide (EG)/MoO2, composites are synthesized by a simple solid-state graphenothermal reduction method. Graphene oxide (GO) is used as a reducing agent to reduce MoO3 and as a source for EG. The formation of different submicron sized morphologies such as spheres, rods, flowers, etc., of monoclinic MoO2 on EG surfaces is confirmed by complementary characterization techniques. As-synthesized EG/MoO2 composite with a higher weight percentage of EG performed excellently as an anode material in lithium-ion batteries. The galvanostatic cycling studies aided with postcycling cyclic voltammetry and galvanostatic intermittent titrations followed by ex situ structural studies clearly indicate that Li intercalation into MoO2 is transformed into conversion upon aging at low current densities while intercalation mechanism is preferably taking place at higher current rates. The intercalation mechanism is found to be promising for steady-state capacity throughout the cycling because of excess graphene and higher current density even in the operating voltage window of 0.005-3.0 V in which MoO2 undergoes conversion below 0.8 V.
机译:通过简单的固态石墨烯热还原方法合成了片状氧化石墨烯(EG)/ MoO2。氧化石墨烯(GO)用作还原剂以还原MoO3和用作EG的来源。互补的表征技术证实了EG表面上单斜MoO 2的不同亚微米尺寸形态的形成,例如球形,杆状,花朵状等。较高的EG重量百分比的合成EG / MoO2复合材料作为锂离子电池的负极材料表现出色。恒电流循环研究辅以循环后伏安法和恒电流间歇滴定,然后进行异位结构研究,清楚地表明,在低电流密度下,老化时Li嵌入MoO2中的转化为转化,而嵌入机理优选在较高电流速率下进行。发现插层机制对于整个循环中的稳态容量很有希望,因为即使在0.005-3.0 V的工作电压窗口(MoO2在0.8 V以下进行转换)下,石墨烯的过量存在和较高的电流密度也可以实现。

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