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Constructing hierarchical sulfur-doped nitrogenous carbon nanosheets for sodium-ion storage

机译:构建用于钠离子储存的等级硫掺杂氮碳纳隆

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摘要

Hierarchical sulfur-doped nitrogenous carbon (S/NC) and nitrogenous carbon (NC) nanosheets are successfully fabricated by carbonization of their corresponding precursor polymers which are synthesized through the polymerization reaction of dianhydride and multi-amine compounds. Hierarchical S/NC nanosheets deliver greatly enhanced reversible capacity, compared with hierarchical NC nanosheets, of 280 mAh g(-1) at a current density of 100 mA g(-1) after 300 cycles. It is found that the introduction of sulfur species in carbon skeleton results in increasing the turbostratic structures, rather than enlarging the interlayer distances, for boosting the specific capacity of sodium-ion storage. The turbostratic structures and sulfur dopant existed in the carbon can offer more active sites for the sodium-ion storage. Carbon-based materials doped with sulfur are capable of improving the sodium-ion storage property, which can broaden the horizon of designing a string of outstanding carbon materials for the future energy storage technologies.
机译:通过通过二酐和多胺化合物的聚合反应合成,通过碳化通过碳化来成功制造分层硫掺杂的含氮碳(S / NC)和含氮碳(NC)纳米晶片。与300mA g(-1)在300次循环之后,分层S / NC纳米句几次与分层NC NaNosheS相比,具有大大提高的可逆容量,其在电流密度为100 mA g(-1)。结果发现,在碳骨架中引入硫种类导致涡轮棘轮结构增加,而不是扩大层间距离,以提高钠离子储存的特定容量。碳中存在的涡轮棘轮结构和硫掺杂剂可以为钠离子储存提供更多的活性位点。掺杂硫磺的碳基材料能够改善钠离子储存性能,这可以扩大设计一系列未来的能量存储技术的碳材料串的地平线。

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