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Distinct ionic adsorption sites in defective Prussian blue: a 3D-RISM study

机译:缺陷普鲁士蓝色的不同离子吸附点:3D-Rism研究

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摘要

Ferric hexacyanoferrate (FeHCF) or Prussian blue (PB) exhibits selective alkali ion adsorption and has great potential for use in various applications. In the present work, alkali ion (Li+, Na+, K+, and Cs+) and water configurations in defective PB (d-PB) were studied by using the statistical mechanics of molecular liquids. The three-dimensional (3D) distribution functions of the ions and water were determined by solving the 3D-reference interaction site model (RISM) equation of systems of a unit lattice of d-PB in electrolyte solutions, i.e., LiCl, NaCl, KCl, and CsCl. The results show the difference in the ion-water configurations and distributions between small (Li+ and Na+) and large ions (K+ and Cs+). The adsorption sites of Li+ and Na+ are located off-center and lie on the diagonal axis. By contrast, the larger ions, K+ and Cs+, are adsorbed at the center of the unit cell. The degree of dehydration due to the adsorption of alkali ions indicates that there was no water exchange during Li+ and Na+ adsorption, whereas two and three water molecules were removed after adsorption of K+ or Cs+ in the unit cell.
机译:铁氰化铁(FeHCF)或普鲁士蓝(PB)的选择性表现出碱金属离子吸附并具有很大的用于在各种应用中使用的潜力。另外,在本工作中,碱离子(Li +,钠+,K +,和Cs +)和有缺陷的PB(d-PB)水的配置通过使用分子液体的统计力学研究。离子和水的三维(3D)分布函数通过求解的d-PB的单位晶格的系统的3D-参考相互作用位点模型(RISM)方程在电解质溶液中,即,氯化锂,氯化钠,氯化钾确定和氯化铯。结果表明小(栗+和Na +)和大的离子(K +和Cs +)之间在离子水的结构和分布的差异。的Li +和Na +的吸附位点位于对角线轴偏离中心并位于。相反,较大的离子,K +和Cs +,被吸附在所述单元电池的中心。脱水由于碱离子的吸附度表明有栗+和Na +的吸附过程中没有水交换,而第二和第三水分子在单元电池K +或Cs +的吸附后除去。

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