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MnCO3-RGO composite anode materials: In-situ solvothermal synthesis and electrochemical performances

机译:MNCO3-RGO复合阳极材料:原位溶剂热合成和电化学性能

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摘要

The MnCO3-RGO composite, constructed by MnCO3 microcrystals in-situ nucleated and grown on reduced graphene oxide (RGO) sheets, are synthesized via a facile one-pot solvothermal process. When the MnCO3-RGO composite is used as anode material, it delivers outstanding electrochemical performance: it exhibits a large capacity of 873 mAh g(-1) even after 400 cycles at a current rate of 1 C, which is over 55.6% higher than that of bare MnCO3 (561 mAh g(-1)); most importantly, the MnCO3-RGO composite demonstrates a superior high-rate performance and long-term stability with a very large capacity of 546 mAh g(-1) even after 1000 cycles at a very large current rate of 5 C. This terrific electrochemical performance of MnCO3-RGO composite is mainly ascribed to its unique architecture: the excellent mechanical flexibility of RGO sheets can stabilize the microstructure of MnCO3 and guarantee the long-term stability during charge/discharge even at large current rate; the high conductivity of RGO sheets can effectively accelerate the transfer of electrons. This work presents a facile and cost-effective synthesis strategy, which gives a guidance for the synthesis of the other transition metal oxides-RGO composite. (c) 2019 Elsevier Ltd. All rights reserved.
机译:由MNCO3微晶原位构成的MNCO3-RGO复合材料通过容易的单罐溶剂热法合成核解和生长在氧化物氧化物(RGO)片上。当MNCO3-RGO复合材料用作阳极材料时,它提供出色的电化学性能:即使在1℃的电流速率下速率为400次循环后,它也表现出大容量为873mAhg(-1),这比超过55.6%裸MNCO3(561mAhg(-1));最重要的是,MNCO3-RGO复合材料表明,即使在1000次循环为5℃的情况下,即使在1000次循环为5℃的情况下,均具有546mAhg(-1)的高容量的高速率性能和长期稳定性。这一极佳的电化学MNCO3-RGO复合材料的性能主要归因于其独特的架构:RGO板材的优异机械柔韧性可以稳定MNCO3的微观结构,并在电流速率的情况下确保充电/放电期间的长期稳定性; RGO板材的高导电性可以有效地加速电子的转移。这项工作介绍了一种容易性和经济高效的合成策略,其给出了对另一个过渡金属氧化物-RGO复合材料的合成的指导。 (c)2019 Elsevier Ltd.保留所有权利。

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