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首页> 外文期刊>Nanoscale >Hydrothermal-assisted synthesis of the Na7V4(P2O7)(4)(PO4)/C nanorod and its fast sodium intercalation chemistry in aqueous rechargeable sodium batteries
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Hydrothermal-assisted synthesis of the Na7V4(P2O7)(4)(PO4)/C nanorod and its fast sodium intercalation chemistry in aqueous rechargeable sodium batteries

机译:Hydrothermal-assisted合成的Na7V4 (P2O7) (4) (PO4) / C奈米棒及其快钠夹层化学水可充电钠离子电池

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摘要

Both high safety and low cost give aqueous rechargeable sodium-ion batteries (ARSB) the opportunity for application in stationary energy storage, but the low operating potential of the existing cathode materials limits its energy density. Here, we introduce a hydrothermal-assisted strategy to prepare the Na7V4(P2O7)(4)(PO4)/C nanorod and employ it as a novel high-property cathode material for ARSB. The hierarchical structure is formed by direct in situ carbonization of the surfactants (CTAB and oxalic acid) along with the crystallization of Na7V4(P2O7)(4)(PO4). The prepared Na7V4(P2O7)(4)(PO4) with a well-defined 1D nanostructure and uniform particle size is wrapped with a thin carbon layer. For the first time, its sodium intercalation chemistry in an aqueous electrolyte was investigated. Based on the reversible phase transformation and high sodium diffusion coefficient, it is demonstrated to be reliable in an aqueous electrolyte with the rapid ion transport capability. A pair of redox plateaus is observed in the charge and discharge curves at 0.961 and 0.944 V (vs. SCE) respectively with the capacity of 51.2 mA h g(-1) at 80 mA g(-1). Favored by the open ion channel and 1D morphology, the composite exhibits superior high rate capability and 72% of the capacity remains at 1000 mA g(-1). The results not only demonstrate a high-property cathode material for ARSB, but also are helpful for design and synthesis of mixed-polyanion electrode materials with tailored architecture.
机译:高安全性和低成本提供水充电钠电池(ARSB)应用固定能量的机会存储,但低操作的潜力现有的阴极材料限制了其能源密度。hydrothermal-assisted策略准备Na7V4 (P2O7) (4) (PO4) / C奈米棒和使用它作为一个小说ARSB性能独特阴极材料。层次结构是由直接表面活性剂(CTAB和原位碳化草酸)的结晶Na7V4 (P2O7) (4) (PO4)。Na7V4 (P2O7) (4) (PO4),定义良好的1 d纳米结构、颗粒大小均匀用一个薄的碳层。时间,其钠化学在一个夹层水电解质研究。可逆相变和高钠离子扩散系数,它演示了在一个水电解质是可靠的快速离子传输能力。观察到高原的充电和放电曲线在0.961和0.944 V(和SCE)分别与马的能力51.2 h g (1)马在80 g(1)。和1 d形态,复合展品优越的高速率和72%的能力马能力仍然保持在1000 g(1)。不仅展示性能独特阴极ARSB材料,但也有帮助设计和合成mixed-polyanion电极材料定制体系结构。

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