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Enhanced Lithium Storage in Reduced Graphene Oxide-supported M-phase Vanadium(IV) Dioxide Nanoparticles

机译:还原氧化石墨烯负载的M相二氧化钒(IV)纳米颗粒中增强的锂存储

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摘要

Vanadium(IV) dioxide (VO2) has drawn attention as one of the most attractive electrode materials for lithium-ion batteries (LIBs), hence, much research has been conducted in various sectors in this field. However, to date, most of this research has focused on the VO2(B) polymorph, whereas electrochemical information on the use of VO2(M) in LIB electrodes is insufficient. Thus, it is worthwhile to explore the possibility of using VO2(M) for LIB electrode application, and to investigate whether its electrochemical properties can be improved. In this study, VO2(M) nanoparticles, incorporated with a reduced graphene oxide composite (NP-VO2/rGO), were successfully synthesized via a sol–gel assisted hydrothermal process by the chemical reduction of V2O5 gel, using hydrazine as the reducing agent. The particle size was less than 50 nm regardless of the presence of rGO. Also, NP-VO2/rGO exhibited a specific capacity of 283 mA h g−1 up to the 200th cycle at a current density of 60 mA g−1, indicating its potential to be used in LIBs.
机译:作为锂离子电池(LIB)最具吸引力的电极材料之一,二氧化钒(VO2)已引起人们的关注,因此,在该领域的各个领域都进行了很多研究。然而,迄今为止,大多数研究都集中在VO2(B)多晶型物上,而关于LIB电极中VO2(M)的电化学信息尚不充分。因此,有必要探索将VO2(M)用于LIB电极的可能性,并研究其电化学性能是否可以改善。在这项研究中,VO2(M)纳米粒子与还原的氧化石墨烯复合物(NP-VO2 / rGO)结合,通过溶胶-凝胶辅助水热工艺,通过使用肼作为还原剂对V2O5凝胶进行化学还原而成功合成。 。无论是否存在rGO,粒径均小于50μm。另外,NP-VO2 / rGO在电流密度为60 mA g -1时,直至第200 周期的比容量为283 mA hg -1 ,表示它有可能在LIB中使用。

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