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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A core-shell heterostructured CuFe@NiFe Prussian blue analogue as a novel electrode material for high-capacity and stable capacitive deionization
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A core-shell heterostructured CuFe@NiFe Prussian blue analogue as a novel electrode material for high-capacity and stable capacitive deionization

机译:核心壳异质结构Cufe @ NiFe Prussian蓝色模拟作为用于高容量和稳定电容去离子的新型电极材料

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摘要

Prussian blue analogues (PBAs) have recently been proposed as electrode materials for efficient capacitive deionization (CDI). However, there is a conflict between the desalination capacity and stability for singlecomponent bimetallic PBAs, making it difficult to simultaneously achieve high desalination capacity and recyclability. To overcome this limitation, this study made an attempt to synthesize the core@ shell heterostructured CuFe@ NiFe PBA by enclosing a high-capacity CuFe PBA with the stable NiFe PBA shell. The desalination tests showed that the CuFe@ NiFe PBA had a higher desalination capacity with less energy consumption compared with the sole core material, associated with the more rapid intercalation reactions of Na ions due to the unique core-shell heterostructure. Furthermore, the recyclability of the CuFe@ NiFe PBA was improved significantly, attributed to the protective effect of the NiFe PBA against the irreversible structural change of the CuFe PBA during the long-term operation. The electrochemical and material measurements revealed that the desalination and regeneration processes were governed by the redox of the Fe3+/Fe2+ couple and Cu2+/Cu+ couple while the Ni3+/Ni2+ couple was electrochemically inactive for the CuFe@ NiFe PBA. Consequently, the core-shell heterostructured CuFe@ NiFe PBA would be a promising material for application in a CDI system.
机译:最近已经提出了普鲁士蓝色类似物(PBA)作为有效的电容去离子(CDI)的电极材料。然而,在单次单位双金属PBA的脱盐容量和稳定性之间存在冲突,使得难以同时实现高海水淡化和可回收性。为了克服这种限制,这项研究试图通过用稳定的NiFe PBA壳封闭高容量Cufe PBA来合成核心@ NiFe PBA的核心@ NiFe PBA。与唯一的核心材料相比,脱盐试验表明,与唯一的核心材料相比,与唯一的核心材料相比,能量消耗较低的脱盐容量较高。由于独特的核心壳异质结构,与Na离子的更快速的嵌入反应相关。此外,Cufe @ NiFe PBA的可回收性显着提高,归因于NiFe PBA对长期操作期间CuFe PBA的不可逆结构变化的保护作用。电化学和物质测量显示,脱盐和再生过程由Fe3 + / Fe2 +夫妇和Cu2 + / Cu +夫妇的氧化还原治疗,而Ni3 + / Ni2 +夫妇用于CUFE @ NiFe PBA的电化学无效。因此,核心壳异质结构Cufe @ NiFe PBA将是在CDI系统中应用的有希望的材料。

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