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Two-dimensional connective nanostructures of electrodeposited Zn on Au(111)induced by spinodal decomposition

机译:旋节线分解在Au(111)上电沉积Zn的二维结缔纳米结构

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Phase formation of surface alloying by spinodal decomposition has been studied at an electrified interface.For this aim Zn was electrodeposited on Au(lll)from the ionic liquid A1C1_3-MBIC(58:42)containing 1 mM Zn(II)at different potentials in the underpotential range corresponding to submonolayer up to monolayer coverage.Structure evolution was observed by in situ electrochemical scanning tunneling microscopy(STM)at different times after starting the deposition via potential jumps and at temperatures of 298 and 323 K.Spinodal or labyrinth two-dimensional structures predominate at middle coverage,both in deposition and in dissolution experiments.They are characterized by a length scale of typically 5 nm which has been determined from the power spectral density of STM images.Structure formation and surface alloying are governed by slow kinetics with a rate constant k with activation energy of 120 meV and preexponential factor of 0.17 s~(-1).The evolution of the structural features is described by a continuum model and is found to be in good agreement with the STM observations.From the experimental and model calculation results we conclude that the two-dimensional phase formation in the Zn on Au(111)system is dominated by surface alloying.The phase separation of a Zn-rich and a Zn-Au alloy phase is governed by two-dimensional spinodal decomposition.
机译:研究了在带电界面上通过旋节线分解进行表面合金化的相形成过程。为此,将锌从含有1 mM Zn(II)的离子液体A1C1_3-MBIC(58:42)中以不同电位电沉积在Au(III)上。在沉积开始后的不同时间,通过电势跃迁以及在298和323 K的温度下,通过原位电化学扫描隧道显微镜(STM)观察了结构演化。在沉积和溶出实验中,结构均以中覆盖为主导,其特征是典型的5nm长尺度,这是由STM图像的功率谱密度决定的。速率常数k,活化能为120 meV,预指数因子为0.17 s〜(-1)。根据实验和模型计算结果,我们得出结论认为,Au(111)体系中Zn的二维相形成主要受表面合金化的影响。富锌相和Zn-Au合金相的相分离由二维旋节线分解控制。

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