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首页> 外文期刊>ChemElectroChem >Na-Doped C-70 Fullerene/N-Doped Graphene/Fe-Based Quantum Dot Nanocomposites for Sodium-Ion Batteries with Ultrahigh Coulombic Efficiency
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Na-Doped C-70 Fullerene/N-Doped Graphene/Fe-Based Quantum Dot Nanocomposites for Sodium-Ion Batteries with Ultrahigh Coulombic Efficiency

机译:Na-掺杂的C-70富勒烯/ N掺杂石墨烯/ Fe基量子点纳米复合材料,用于钠离子电池,具有超高型库仑效率

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摘要

Na-doped C-70 fullerene (Na-C-70)/N-doped graphene (N-GN)/Fe-based nanocomposites (Na-C-70/N-GN/FBNCs) with the multiple morphologies are fabricated through an in situ one-step method with multifunction sodium lignosulfonate (SLS) as the structural template and the main raw material. Fe-based quantum dots (FBQDs) can be embeded in the ordered mesoporous hybrid carbon structure of Na-C-70 and N-GN through a spontaneous chelation reaction of SLS with iron ions and carbonization under relatively mild hydrothermal treatment. We investigate the influences of the molar ratio of SLS/Fe on the structure, components, and electrochemical properties of the nanocomposites. Its unique hybrid carbon structure offers metallicity and superconductivity, countless bonding sites of Na ions, and facilitates the transfer of electrons and Na ions during prolonged cycling. The nanocomposites for sodium-ion batteries anodes can achieve the highest discharge capacities of 1898 mAhg(-1) at a current density of 1000 mAg(-1), and can retain a reversible capacity of 238 mAhg(-1) after 100 cycles, which are significantly better than those of lithium-ion batteries. The discharge and charge capacities at 1 Ag-1 after 30th cycles are 356 and 119 mAhg(-1), respectively, with an ultrahigh coulombic efficiency of 299% and the highest coulombic efficiency of 463% after 220 cycles.
机译:具有多种形态的Na掺杂的C-70富勒烯(Na-C-70)/ N掺杂的石墨烯(N-GN)/ Fe纳米复合材料(Na-C-70 / N-GN / FBNC)通过原位一步法用多功能木质素磺酸钠(SLS)作为结构模板和主要原料。 Fe基量子点(FBQDS)可以通过在相对温和的水热处理下的铁离子和碳化的SLS的自发螯合反应中嵌入Na-C-70和N-Gn的有序的介孔杂交碳结构。我们研究了SLS / Fe对纳米复合材料的结构,组分和电化学性质的影响。其独特的杂交碳结构提供金属性和超导性,Na离子的无数键合位点,并促进在延长循环期间电子和Na离子的转移。用于钠离子电池阳极的纳米复合材料可以在1000mag(-1)的电流密度下实现1898毫安(-1)的最高放电容量,并且在100次循环后可以保留238mAhg(-1)的可逆容量,这显着优于锂离子电池。第30次循环后1〜Ag-1的放电和充电容量分别为356和119mAhg(-1),超高的库仑效率为299%,220个循环后的463%的最高库仑效率为463%。

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