首页> 外文期刊>Frontiers in Chemistry >Sintering Temperature Induced Evolution of Microstructures and Enhanced Electrochemical Performances: Sol-Gel Derived LiFe(MoO4)2 Microcrystals as a Promising Anode Material for Lithium-Ion Batteries
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Sintering Temperature Induced Evolution of Microstructures and Enhanced Electrochemical Performances: Sol-Gel Derived LiFe(MoO4)2 Microcrystals as a Promising Anode Material for Lithium-Ion Batteries

机译:烧结温度诱导的微观结构演变和增强的电化学性能:溶胶凝胶衍生的LiFe(MoO4)2微晶作为锂离子电池的有希望的阳极材料

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A facile sol-gel process was used for synthesis of LiFe(MoO4)2 microcrystals. The effects of sintering temperature on the microstructures and electrochemical performances of the as-synthesized samples were systematically investigated through XRD, SEM and electrochemical performance characterization. When sintered at 650 ℃, the obtained LiFe(MoO4)2 microcrystals show regular shape and uniform size distribution with mean size of 1-2 μm. At the lower temperature (600 ℃), the obtained LiFe(MoO4)2 microcrystals possess relative inferior crystallinity, irregular morphology and vague grain boundary. At the higher temperatures (680 and 700 ℃), the obtained LiFe(MoO4)2 microcrystals are larger and thicker particles. The electrochemical results demonstrate that the optimized LiFe(MoO4)2 microcrystals (650 ℃) can deliver a high discharge specific capacity of 925 mAh g-1 even at a current rate of 1 C (1050 mA g-1) after 500 cycles. Our work can provide a good guidance for the controllable synthesis of other transition metal NASICON-type electrode materials.
机译:简便的溶胶-凝胶法用于合成LiFe(MoO4)2微晶。通过XRD,SEM和电化学性能表征,系统地研究了烧结温度对合成后样品微观结构和电化学性能的影响。在650℃烧结时,所得LiFe(MoO4)2微晶呈现规则的形状和均匀的尺寸分布,平均尺寸为1-2μm。在较低的温度(600℃)下,所获得的LiFe(MoO4)2微晶具有相对较低的结晶度,不规则的形貌和模糊的晶界。在较高的温度(680和700℃)下,获得的LiFe(MoO4)2微晶较大且较厚。电化学结果表明,经过优化的LiFe(MoO4)2微晶(650℃)在500次循环后即使在1 C(1050 mA g-1)的电流速率下也可以提供925 mAh g-1的高放电比容量。我们的工作可以为可控合成其他过渡金属NASICON型电极材料提供良好的指导。

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