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首页> 外文期刊>Separation and Purification Technology >Pulsed electrodeposition of nickel hexacyanoferrate films for electrochemically switched ion exchange
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Pulsed electrodeposition of nickel hexacyanoferrate films for electrochemically switched ion exchange

机译:六氰合铁酸镍薄膜的脉冲电沉积,用于电化学交换离子交换

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Nickel hexacyanoferrate (NiHCF) thin films were prepared on graphite substrates by pulse electrodeposition and investigated for use as electrochemically switched ion exchange (ESIX) materials. The pulse waveforms investigated consisted of an applied potential during the on-period and zero current during the off-period. Cyclic voitammetry (CV) was used to study the effects of the pulse potential and off-time on the ion-exchange capacity of NiHCF film electrodes. The cycle life and regenerability of the film electrodes were also investigated. Experimental results show that the optimum pulse potential, on/off-period (t_(on)/t_(off)) and duty cycle are 0.3 V (vs. SCE), 300ms/300ms and 50%, respectively. The deposited NiHCF is uniformly distributed over the surface of the graphite and yields thin film electrodes with high ion exchange capacity for K~+, good stability and regenerability. The films produced by pulse deposition were also found to have superior exchange capacity and stability to those produced by the more common CV method.
机译:通过脉冲电沉积法在石墨基底上制备了六氰合铁酸镍(NiHCF)薄膜,并研究了其用作电化学开关离子交换(ESIX)材料。研究的脉冲波形由导通期间的施加电势和截止期间的零电流组成。循环伏安法(CV)用于研究脉冲电位和关闭时间对NiHCF膜电极的离子交换能力的影响。还研究了膜电极的循环寿命和可再生性。实验结果表明,最佳脉冲电势,开/关周期(t_(on)/ t_(off))和占空比分别为0.3 V(vs. SCE),300ms / 300ms和50%。沉积的NiHCF均匀地分布在石墨表面上,产生的薄膜电极具有高的K〜+离子交换能力,良好的稳定性和可再生性。还发现通过脉冲沉积生产的薄膜具有比通过更普通的CV方法生产的薄膜更高的交换容量和稳定性。

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