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Carbon Wrapped Ni3S2 Nanocrystals Anchored on Graphene Sheets as Anode Materials for Lithium-Ion Battery and the Study on Their Capacity Evolution

机译:碳包裹的Ni3S2纳米晶锚固在石墨烯片上作为锂离子电池负极材料及其容量演变的研究

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摘要

Ni3S2 nanocrystals wrapped by thin carbon layer and anchored on the sheets of reduced graphene oxide (Ni3S2@C/RGO) have been synthesized by a spray-coagulation assisted hydrothermal method and combined with a calcination process. Cellulose, dissolved in Thiourea/NaOH aqueous solution is chosen as carbon sources and mixed with graphene oxide via a spray-coagulation method using graphene suspension as coagulation bath. The resulted cellulose/graphene suspension is utilized as solvent for dissolving of Ni(NO3)2 and then used as raw materials for hydrothermal preparation of the Ni3S2@C/RGO composites. The structure of the composites has been investigated and their electrochemical properties are evaluated as anode material for lithium-ion batteries. The Ni3S2@C/RGO sample exhibits increasing reversible capacities upon cycles and shows a superior rate performance as well. Such kinds of promising performance have been ascribed to the wrapping effect of carbon layer which confines the dislocation of the polycrystals formed upon cycles and the enhanced conductivity as the integration of RGO conductive substrate. Discharge capacities up to 850 and 630 mAh·g−1 at current densities of 200 and 5000 mA·g−1, respectively, are obtained. The evolution of electrochemical performance of the composites with structure variation of the encapsulated Ni3S2 nanocrystals has been revealed by ex-situ TEM and XRD measurements.
机译:通过喷雾凝结辅助水热法合成了Ni3S2纳米晶体,该纳米晶体被碳薄层包裹并锚定在还原的氧化石墨烯片上(Ni3S2 @ C / RGO),并与煅烧过程相结合。选择溶解在硫脲/ NaOH水溶液中的纤维素作为碳源,并通过使用石墨烯悬浮液作为凝聚浴的喷雾凝聚法与氧化石墨烯混合。所得的纤维素/石墨烯悬浮液用作溶解Ni(NO3)2的溶剂,然后用作水热制备Ni3S2 @ C / RGO复合材料的原料。研究了复合材料的结构,并评估了其电化学性能作为锂离子电池的负极材料。 Ni3S2 @ C / RGO样品在循环中显示出增加的可逆容量,并且还显示出优异的速率性能。这种有前途的性能归因于碳层的包裹效应,其限制了在循环中形成的多晶的位错和作为RGO导电基板集成的增强的导电性。在电流密度分别为200和5000 mA·g -1 时,放电容量分别达到850和630 mAh·g -1 。通过异位TEM和XRD测量揭示了复合材料的电化学性能随封装的Ni3S2纳米晶体结构变化的演变。

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