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Elucidating Structure-Composition-Property Relationships of Ni-Based Prussian Blue Analogues for Electrochemical Seawater Desalination

机译:阐明基于Ni的普鲁士蓝色类似物的结构 - 构成性质关系,用于电化学海水淡化

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Nickel hexacyanoferrate (NiHCF), a type of Prussian blue analogue (PBA), has recently emerged as one of the most promising Na-storage electrodes for use in electrochemical desalination. Previous studies have revealed that NiHCF can be prepared with both cubic and rhombohedral symmetries depending on the oxidation state of Fe (Fe-II vs Fe-III) and the related A-site occupancy. However, our understanding of the effects of the lattice-type of the as-prepared samples on their electrochemical performances, structural transitions that occur during sodiation/desodiation, cyclability, and rate capabilities is presently lacking. Additionally, the optimum structural and compositional features required to prepare high-performing NiHCF electrodes have not yet been clearly established. In this work, we report the synthesis of two sets of cubic and rhombohedral NiHCF samples with different particle sizes, crystallinities, and compositions. Using these samples, we systematically elucidated the structure-composition-property relationships of NiHCF to develop rational design principles to prepare high-performing PBAs. Our results show that high crystallinity, a low number of Fe(CN)(6) vacancies, and a large unit cell size to allow for consistent structural changes during cycling are critical factors to produce NiHCF with a high capacity, good cycling stability, and good rate capabilities, and these factors are considerably affected by the synthesis conditions. One of the samples prepared in this study with optimum structural features demonstrates the best performance and stability among any PBA electrode tested in neutral saline solutions to date.
机译:镍六氰基甲酸酯(NIHCF)是一种普鲁士蓝色模拟(PBA),最近被出现为用于电化学脱盐的最有前途的NA储存电极之一。以前的研究表明,根据Fe(Fe-II Vs Fe-III)和相关的A现场占用的氧化状态,可以用立方和菱形对称进行立方和菱形对称。然而,我们目前缺乏在其电化学性能下,在其电化学性能下,在其电化学性能下,在进行中发生的结构转变,可防止,可防止的样品的效果。另外,尚未明确建立制备高性能NiHCF电极所需的最佳结构和组成特征。在这项工作中,我们报告了两组立方体和菱形NiHCF样品的合成,具有不同的粒度,晶体和组合物。使用这些样品,我们系统地阐明了NIHCF的结构 - 构成性质关系,以制定理性设计原则,以制备高性能的PBA。我们的研究结果表明,高结晶度,少量Fe(CN)(6)个空位,以及循环期间持续结构变化的大单位电池尺寸是产生高容量,循环稳定性的NIHCF的关键因素。良好的速率能力,这些因素受合成条件的显着影响。在该研究中制备的其中一个具有最佳结构特征的样品,以迄今为止在中性盐水溶液中测试的任何PBA电极中的最佳性能和稳定性。

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