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A Material Design on Radioactive Cesium Adsorbent: Cs1-xNaxMnII(CN)3 Prussian Blue Analogue

机译:放射性铯吸附剂的材料设计:Cs1-xNaxMnII(CN)3普鲁士蓝类似物

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After the accident of Fukushima's nuclear power plant, soil contamination was caused by radioactive cesium. In this study, the new cesium-adsorbent: Cs1-xNaxMnII(CN)3 Prussian blue analogue was theoretically designed to solve the problem. In Prussian blue (iron cyano-compound), both water defect and iron vacancy are closely related to cesium-adsorption. On the other hand, in Cs1-xNaxMnII(CN)3, the cesium-adsorption mechanism is completely different. Hybrid Kohn-Sham DFT calculations were performed to investigate the cesium-adsorption mechanism. It was concluded that more stable and efficient cesium-adsorption can be realized by the ion exchange between counter cations (between sodium and cesium ions), under applied voltage.
机译:福岛核电站事故发生后,土壤污染是由放射性铯引起的。在这项研究中,理论上设计了新的铯吸附剂:Cs1-xNaxMnII(CN)3普鲁士蓝类似物来解决该问题。在普鲁士蓝(氰基铁化合物)中,水缺陷和铁空位都与铯的吸附密切相关。另一方面,在Cs1-xNaxMnII(CN)3中,铯的吸附机理完全不同。进行混合Kohn-Sham DFT计算以研究铯的吸附机理。结论是,在施加电压的情况下,抗衡阳离子之间(钠和铯离子之间)的离子交换可以实现更稳定和有效的铯吸附。

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