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Highly Stable Nickel Hexacyanoferrate Nanotubes for Electrically Switched Ion Exchange

机译:用于电开关离子交换的高度稳定的六氰基高铁酸镍纳米管

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Nickel hexacyanoferrate (NiHCF) nanotubes are fabricated by an electrokinetic method based on the distinct surface properties of porous anodic alumina. By this method, nanotubes can be formed rapidly with the morphologies faithfully replicating the nanopores in the template. The prepared nanotubes were carefully characterized using SEM and TEM. Results from IR, UV, EDX, and electrochemical measurements show that the NiHCF nanotubes exist only in the form of K_2Ni[Fe(CN)_6]. Because of this single composition and unique nanostructure, NiHCF nanotubes show excellently stable cesium-selective ion-exchange ability. The capacity for electrodes modified with NiHCF nanotubes after 500 potential cycles retains 95.3 % of its initial value. Even after 1500 and 3000 cycles, the NiHCF nanotubes still retain 92.2% and 82.9%, respectively, of their ion-exchange capacity.
机译:基于多孔阳极氧化铝的独特表面特性,通过电动方法制备了六氰合铁酸镍(NiHCF)纳米管。通过这种方法,可以迅速形成纳米管,其形态可以忠实地复制模板中的纳米孔。使用SEM和TEM仔细地表征了所制备的纳米管。 IR,UV,EDX和电化学测量的结果表明,NiHCF纳米管仅以K_2Ni [Fe(CN)_6]的形式存在。由于这种单一的成分和独特的纳米结构,NiHCF纳米管显示出极好的稳定的铯选择性离子交换能力。经过500个电位循环后,用NiHCF纳米管改性的电极的容量保持其初始值的95.3%。即使经过1500和3000次循环,NiHCF纳米管仍分别保持其离子交换容量的92.2%和82.9%。

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