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Magneto-Dendrite Effect: Copper Electrodeposition under High Magnetic Field

机译:磁-树突效应:强磁场下的铜电沉积

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摘要

Ionic vacancy is a by-product in electrochemical reaction, composed of polarized free space of the order of 0.1 nm with a 1 s lifetime, and playing key roles in nano-electrochemical processes. However, its chemical nature has not yet been clarified. In copper electrodeposition under a high magnetic field of 15 T, using a new electrode system called cyclotron magnetohydrodynamic (MHD) electrode (CMHDE) composed of a pair of concentric cylindrical electrodes, we have found an extraordinary dendritic growth with a drastic positive potential shift from hydrogen-gas evolution potential. Dendritic deposition is characterized by the co-deposition of hydrogen molecule, but such a positive potential shift makes hydrogen-gas evolution impossible. However, in the high magnetic field, instead of flat deposit, remarkable dendritic growth emerged. By examining the chemical nature of ionic vacancy, it was concluded that ionic vacancy works on the dendrite formation with the extraordinary potential shift.
机译:离子空位是电化学反应中的副产物,由0.1 nm的极化自由空间和1 lifetime的寿命组成,在纳米电化学过程中起着关键作用。但是,其化学性质尚未阐明。在15 T的强磁场下进行铜电沉积时,我们使用一种由一对同心圆柱状电极组成的称为回旋加速器磁流体动力学(MHD)电极(CMHDE)的新电极系统,我们发现了异常的树枝状生长,其正电势从氢气逸出潜力。树突状沉积的特征在于氢分子的共沉积,但是这种正电位偏移使氢气逸出成为不可能。然而,在强磁场中,出现了明显的枝晶生长,而不是平坦的沉积物。通过检查离子空位的化学性质,可以得出结论,离子空位对枝晶的形成具有非常大的电位偏移。

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