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Graphite as a potassium ion battery anode in carbonate-based electrolyte and ether-based electrolyte

机译:石墨作为碳酸盐基电解质和醚基电解质中钾离子电池的阳极

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The graphite as the potassium ion battery anode is studied in KPF6-EC/DMC and KPF6-DME electrolytes. It is found that the graphite demonstrates superior rate performance with a capacity of 87 mAh g(-1) at a current rate of 10 C (corresponding to 2.8 A g(-1)) and excellent capacity retention ability of 84% after 3500 cycles in DME-based electrolyte. Moreover, its initial coulombic efficiency is 87.4%, higher than 69.6% in EC/DMC-based electrolyte. The K+ solvating with DME complexes co-intercalate into graphite leading a high operational voltage at similar to 0.7 V vs. similar to 0.2 V in carbonate-based electrolyte, a fast apparent K+ diffusion coefficient of 10(-8) cm(2) s(-1), a negligible solid-electrolyte interface film, a small volume expansion (7.7% in (002) plane vs. 63% in EC/DMC electrolyte). This study addresses the importance of electrolyte in altering the potassium storage mechanisms to tune the energy density and power density in potassium ion batteries (KIBs).
机译:在KPF6-EC / DMC和KPF6-DME电解质中研究了作为钾离子电池阳极的石墨。发现石墨显示出优异的速率性能,在10 C的电流速率(相当于2.8 A g(-1))下的容量为87 mAh g(-1),在3500次循环后具有84%的出色容量保持能力在基于DME的电解液中此外,其初始库仑效率为87.4%,高于基于EC / DMC的电解质的69.6%。与DME配合物形成的K +溶剂共嵌入石墨中,从而在基于碳酸盐的电解液中以接近0.7 V的高工作电压与接近于0.2 V的石墨相结合,快速表观K +扩散系数为10(-8)cm(2)s (-1),可忽略不计的固体电解质界面膜,体积膨胀小(在(002)平面中为7.7%,在EC / DMC电解质中为63%)。这项研究解决了电解质在改变钾存储机制以调节钾离子电池(KIBs)的能量密度和功率密度中的重要性。

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