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Preparation and lithium storage performance of C-GQDs/α-Fe_2O_3 nanocomposites

机译:C-GQDS /α-FE_2O_3纳米复合材料的制备和锂储存性能

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Nano-Fe_2O, particles on a nickel substrate have been obtained by electrodeposition technique adjusting the ratio of electrolyte solvent (DMF and water), and then it was used as the working electrode to obtain the C-GQDs/α-Fe_2O_3 composite material via second-step electrodeposition with the coal-based graphene quantum dots (C-GQDs) solution which had been prepared from Taixi anthracite powder as the electrolyte. The results show that the composites exhibited excellent cyclability and rate capability. When the current density was 1 A/g, the specific capacitance of C-GQDs/α-Fe_2O_3 composites was up to 1582.5 mAh/g, and it could maintain 1320 mAh/g after 110 cycles.
机译:纳米Fe_2O,通过电解技术调节电解质溶剂(DMF和水)的电沉积技术获得镍基材上的颗粒,然后用作工作电极,通过第二次以获得C-GQDS /α-FE_2O_3复合材料 - 用煤基石墨烯量子点(C-GQDS)溶液的电沉积,其由Taixi无烟煤粉作为电解质制备。结果表明,复合材料表现出优异的可靠性和速率能力。当电流密度为1A / g时,C-GQDS /α-FE_2O_3复合材料的比电容高达1582.5mAh / g,并且在110次循环后它可以保持1320mAh / g。

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