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首页> 外文期刊>Advanced Science >Stabilized Molybdenum Trioxide Nanowires as Novel Ultrahigh‐Capacity Cathode for Rechargeable Zinc Ion Battery
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Stabilized Molybdenum Trioxide Nanowires as Novel Ultrahigh‐Capacity Cathode for Rechargeable Zinc Ion Battery

机译:稳定的三氧化钼纳米线作为可再充电锌离子电池的新型超高容量阴极

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摘要

Exploration of high‐performance cathode materials for rechargeable aqueous Zn ion batteries (ZIBs) is highly desirable. The potential of molybdenum trioxide (MoO 3 ) in other electrochemical energy storage devices has been revealed but held understudied in ZIBs. Herein, a demonstration of orthorhombic MoO 3 as an ultrahigh‐capacity cathode material in ZIBs is presented. The energy storage mechanism of the MoO 3 nanowires based on Zn 2+ intercalation/deintercalation and its electrochemical instability mechanism are particularly investigated and elucidated. The severe capacity decay of the MoO 3 nanowires during charging/discharging cycles arises from the dissolution and the structural collapse of MoO 3 in aqueous electrolyte. To this end, an effective strategy to stabilize MoO 3 nanowires by using a quasi‐solid‐state poly(vinyl alcohol)(PVA)/ZnCl 2 gel electrolyte to replace the aqueous electrolyte is developed. The capacity retention of the assembled ZIBs after 400 charge/discharge cycles at 6.0 A g ?1 is significantly boosted, from 27.1% (in aqueous electrolyte) to 70.4% (in gel electrolyte). More remarkably, the stabilized quasi‐solid‐state ZIBs achieve an attracting areal capacity of 2.65 mAh cm ?2 and a gravimetric capacity of 241.3 mAh g ?1 at 0.4 A g ?1 , outperforming most of recently reported ZIBs.
机译:迫切需要探索用于可充电含水锌离子电池(ZIB)的高性能阴极材料。三氧化钼(MoO 3)在其他电化学储能装置中的潜力已被揭示,但在ZIBs中尚未得到充分研究。本文介绍了正交晶MoO 3作为ZIBs中超高容量阴极材料的演示。特别研究并阐明了基于Zn 2+嵌入/脱嵌的MoO 3纳米线的储能机理及其电化学不稳定性机理。 MoO 3纳米线在充电/放电循环期间的严重容量衰减是由于MoO 3在水性电解质中的溶解和结构塌陷引起的。为此,开发了一种通过使用准固态聚(乙烯醇)(PVA)/ ZnCl 2凝胶电解质代替水性电解质来稳定MoO 3纳米线的有效策略。在600 A g?1下400次充/放电循环后,组装后的ZIB的容量保持率从27.1%(在水性电解质中)显着提高到70.4%(在凝胶电解质中)。更引人注目的是,稳定的准固态ZIB在0.4 A g?1的条件下具有2.65 mAh cm?2的吸引面积容量和241.3 mAh g?1的重量分析能力,优于最近报道的大多数ZIB。

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