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Phenolic resin-based carbon microspheres for potassium ion storage

机译:酚醛树脂基碳微球用于钾离子存储

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Potassium ion batteries (PIBs) have received widespread attention nearly four years due to sufficient potassium resources and similar chemical properties of potassium to lithium. Several works reported that N-doping on the carbon electrodes could efficiently improve the storage capacity of potassium ions. Herein, we synthesized two series of carbon spheres with the main difference is with or without N-doping. It is found that the storage of potassium ions is mainly determined by the crystal structure instead of N-doping. N-doping seems to affect the ion diffusion process, but the total capacity is still determined by the (0 0 2) lateral size of the carbon materials (L-a). The specific capacity increases as L-a increases. The N-doped carbon sphere with larger L-a of 8.32 nm, delivers a higher reversible capacity of 241 mAh g(-1) at a current density of 25 mA g(-1). And it still remains 121 mAh g(-1) after 100 cycles at a current density of 100 mA g(-1).
机译:钾离子电池(PIB)由于足够的钾资源和钾与锂的相似化学性质而受到了近四年的广泛关注。几项工作报道,碳电极上的N掺杂可以有效地提高钾离子的储存能力。在这里,我们合成了两个系列的碳球,主要区别是有或没有氮掺杂。发现钾离子的储存主要由晶体结构而不是N掺杂决定。 N掺杂似乎会影响离子扩散过程,但总容量仍由碳材料(L-a)的横向尺寸(0 0 2)确定。随着L-a增加,比容量增加。具有8.32 nm的较大L-a的N掺杂碳球在25 mA g(-1)的电流密度下可提供241 mAh g(-1)的更高可逆容量。并且在100 mA g(-1)的电流密度下经过100次循环后仍保持121 mAh g(-1)。

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