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Synthesis and characterization of self-assembled nanofiber-bundles of V2O5: their electrochemical and field emission properties

机译:自组装合成和表征nanofiber-bundles V2O5:电化学场发射性能

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摘要

High-quality self-assembled V2O5 nanofiber-bundles (NBs) are synthesized by a simple and direct hydrothermal method using a vanadium(v) hydroxylamido complex as a vanadium source in the presence of HNO3. The possible reaction pathway for the formation of V2O5 NBs is discussed and demonstrated that HNO3 functions both as an oxidizing and as an acidification agent. V2O5 NBs are single-crystals of an orthorhombic phase that have grown along the [010] direction. A bundle is made of indefinite numbers of homogeneous V2O5 nanofibers where nanofibers have lengths up to several micrometres and widths ranging between 20 and 50 nm. As-prepared V2O5 NBs display a high electrochemical performance in a non-aqueous electrolyte as a cathode material for lithium ion batteries. Field emission properties are also investigated which shows that a low turn-on field of ~1.84 V μm~(-1) is required to draw the emission current density of 10 μA cm~(-2).
机译:高质量的自组装V2O5 nanofiber-bundles(国家统计局)是由一个简单和直接合成水热方法使用钒(v)hydroxylamido复杂作为钒的来源硝酸的存在。V2O5的形成和讨论国家统计局表明,硝酸既是功能氧化和作为酸化剂。是单晶的斜方晶系的阶段沿[010]方向增长。不定数量的均匀V2O5做的纳米纤维,纳米纤维长度几个微米和宽度介于20和50 nm。在无水的电化学性能电解质作为锂离子的阴极材料电池。研究表明,低刺激V ~ 1.84μm ~(1)画出所需发射电流密度10μ一厘米~(2)。

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