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Preparation of Lithium Ion Battery Anode Materials from Precipitation Flotation Product

机译:沉淀浮选产品的锂离子电池阳极材料的制备

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The anode materials for lithium ion battery can be prepared from the heavy metal ion flotation product in the metal-containing wastewater. Porous Cu-Fe-metal organic frameworks (MOFs) were pyrolyzed and synthesized from precipitation flotation product in this study. When treated as a self-template by pyrolysis of Cu-Fe-MOFs at 750 °C for 1.0 h in an air atmosphere, the porous composite oxides containing CuFe_2O_4 and Fe_2O_3 were prepared and tested as anode materials for lithium ion batteries (LIBs). The electrochemical measurements demonstrated that the composite oxides released an initial discharge capacity of 1453.4 mAh g~(-1) at the current density of 100 mA g~(-1) and remain reversible capacity of 519.5 mAh g~(-1) after 50 cycles, together with superior cyclic stability and unique structure. The composite oxides can be seen as to be a promising anode material for LIBs. This work can realize the effective utilization of heavy metal resources from wastewater recycling.
机译:用于锂离子电池的阳极材料可以由含金属废水中的重金属离子浮选产品制备。多孔Cu-Fe金属有机框架(MOF)在本研究中从沉淀浮选产品中热解和合成。当通过在空气气氛中以750℃的1.0小时热解被作为自我模板进行的Cu-Fe-Mof,制备含Cufe_2O_4和Fe_2O_3的多孔复合氧化物作为锂离子电池(Libs)的阳极材料。电化学测量表明,复合氧化物在100mA g〜(-1)的电流密度下释放了1453.4mahg〜(-1)的初始放电容量,并在50次后保持可逆容量为519.5mAhg〜(-1)循环,以及卓越的循环稳定性和独特的结构。复合氧化物可以看出是Libs的有望的阳极材料。这项工作可以实现从废水再循环中的重金属资源的有效利用。

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