首页> 外文期刊>Electrochimica Acta >Formation of zinc-oxianion complex adlayer by underpotential deposition of Zn on Au(111) electrode: Preferential formation of zinc monohydrogen phosphate complex in weakly acidic solutions
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Formation of zinc-oxianion complex adlayer by underpotential deposition of Zn on Au(111) electrode: Preferential formation of zinc monohydrogen phosphate complex in weakly acidic solutions

机译:通过在Au(111)电极上欠电位沉积锌来形成锌-氧阴离子络合物附加层:在弱酸性溶液中优先形成磷酸一氢锌络合物

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The underpotential deposition (upd) of zinc was studied on Au(111) electrode in weakly acidic solutions by voltammetry. The difference of anion co-adsorption strength was investigated on upd Zn in the solutions containing phosphate, sulfate, perchlorate, and halides. The order of anion co-adsorption strength was found to be phosphate > sulfate, phosphate perchlorate, and phosphate halides. We present the electrochemical evidence that no co-adsorption of halide progresses on upd Zn at E> -0.7 V (vs. SCE) in spite of the relatively high adsorbability of halide on Au(111). In 0.1 M KH_2PO_4 (pH = 4.4), the amount of charge density of the upd Zn stripping corresponded to that of 1/3 monolayer of the Zn adlayer formed as a result of mono-electron transfer between -0.35V and -0.6V. The coverage was coincident with that inferred from the (√3 × √3)R30° STM image reported by us in the same condition. The formation of zinc-oxianion (phosphate and sulfate) surface complexes by Zn upd was proposed base on the difference of complex formation constants among the related zinc-anion complexes. Identification of the zinc-phosphate surface complex was thermodynamically carried out around pH = 4 with a Nernst equation, where the shifts of Zn upd peak potential were investigated with the concentration changes of Zn~(2+), H_2PO_4~-, and H~+ under an imaginarily reversible condition. The formation of ZnHPO_4 surface complex was concluded in the Zn upd with mono-electron transfer and explained a recent XAS analysis, which demonstrate each phosphate anion bridging three upd Zn atoms.
机译:通过伏安法研究了弱酸性溶液中Au(111)电极上锌的欠电位沉积(upd)。在含磷酸盐,硫酸盐,高氯酸盐和卤化物的溶液中,研究了Zn上阴离子共吸附强度的差异。发现阴离子共吸附强度的顺序为磷酸根>硫酸根,磷酸根>高氯酸根和磷酸根>卤离子。我们提供的电化学证据表明,尽管卤化物在Au(111)上具有相对较高的吸附性,但在E> -0.7 V(vs. SCE)时,在upd Zn上没有发生卤化物的共吸附。在0.1 M KH_2PO_4(pH = 4.4)中,向上的Zn汽提的电荷密度与在-0.35V和-0.6V之间进行单电子转移而形成的Zn沉积层的1/3单层电荷密度相对应。覆盖率与我们在相同条件下报告的(√3×√3)R30°STM图像推论的相符。基于相关锌-阴离子络合物之间络合物形成常数的差异,提出了Zn upd形成锌-氧阴离子(磷酸盐和硫酸盐)表面络合物的方法。用能斯特方程在pH = 4附近热力学鉴定磷酸锌表面配合物,其中随Zn〜(2 +),H_2PO_4〜-和H〜的浓度变化研究了Zn上升峰电位的变化。 +处于可逆状态。 ZnHPO_4表面配合物的形成是在单电子转移的Zn upd中得出的结论,并解释了最近的XAS分析,该分析表明每个磷酸根阴离子桥接三个upd Zn原子。

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