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首页> 外文期刊>ChemElectroChem >Citric Acid Assisted Solid State Synthesis of V2O3, V2O3/C and V2O3/Graphene Composites for Li-ion Battery Anode Applications
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Citric Acid Assisted Solid State Synthesis of V2O3, V2O3/C and V2O3/Graphene Composites for Li-ion Battery Anode Applications

机译:柠檬酸辅助固态合成V2O3,V2O3 / C和V2O3 /石墨烯复合材料,用于锂离子电池阳极应用

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摘要

A series of V2O3, V2O3/C and V2O3/G composite powders are prepared by simply annealing the reaction mixture containing ammonium metavanadate (0.1 M), reduced graphene oxide (rGO, 0.1 M) and citric acid (CA, 0.0, 0.1, 0.3 and 0.5 M) at 500 degrees C for 8 h under Ar flow. A variety of characterization techniques are used to investigate the structural, physiochemical features and electrochemical performance of the powders. The reaction mixture without rGO led to the formation of V2O3 at 0.1 M of CA and V2O3/C at 0.3 and 0.5 M of CA. As anodes of lithium-ion coin cell batteries, V2O3, V2O3/C and V2O3/G composite electrodes exhibit an increase in capacity with increasing concentrations of CA. The increase in capacity is mainly attributed to the carbonization of CA and the declining crystallinity of V2O3. V2O3/C and V2O3/G prepared at 0.5 M of CA outperformed all other control compounds. The V2O3/C and V2O3/G delivered reversible capacities of 585 and 420 mAh g(-1) respectively, during the first cycle with a current density of 50 mA g(-1). The respective capacities after few initial cycles continuously increased to 608 and 463 mAh g(-1) at the end of the 100(th) cycle.
机译:通过简单地退火含有含铵(0.1M),还原的石墨烯(RGO,0.1M)和柠檬酸(CA,0.0,0.1,0.3的反应混合物来制备一系列V2O3,V2O3 / C和V2O3 / G复合粉末。和0.5米)在500摄氏度下,在AR流下8小时。各种表征技术用于研究粉末的结构,生理化学特征和电化学性能。没有RGO的反应混合物导致在0.1μm的0.3和0.5μm的Ca和V2O3 / C的v2O3的形成。作为锂离子硬币电池的阳极,V2O3,V2O3 / C和V2O3 / G复合电极随着CA浓度的增加而表现出容量的增加。容量的增加主要归因于Ca的碳化和V2O3的衰减结晶度。在0.5米的Ca制备V2O3 / C和V2O3 / g优于所有其他对照化合物。在第一个循环期间,V2O3 / C和V2O3 / g分别在第一个循环中传递了585和420mAhg(-1)的可逆容量,电流密度为50mA g(-1)。在100(TH)循环结束时,几个初始循环在几个初始循环中连续增加到608和463mAhg(-1)的相应容量。

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