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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Electrolyte ion adsorption and charge blocking effect at the hematite/aqueous solution interface: an electrochemical impedance study using multivariate data analysis
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Electrolyte ion adsorption and charge blocking effect at the hematite/aqueous solution interface: an electrochemical impedance study using multivariate data analysis

机译:赤铁矿/水溶液界面的电解质离子吸附和电荷阻断作用:使用多元数据分析的电化学阻抗研究

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摘要

A model-free multivariate analysis using singular value decomposition is employed to refine an equivalent electrical circuit model in order to probe the electrochemical properties of the hematite/water interface in dilute NaCl and NH4Cl solutions using electrochemical impedance spectroscopy. The result shows that the surface protonation is directly related to the mobility and trapping of charge carriers at the mineral surface. Moreover, the point of zero charge can be found at pH where the charge transfer resistance is the highest, in addition to the minimum double layer capacitance. The innersphere interaction of the NH4+ ion with the surface is indicated by an increase of capacitance for charge carrier trapping from the protonated surface as well as lower double layer capacitance and open circuit potential. It is clear that the intrinsic electrochemical activity of hematite depends on the degree of surface (de) protonation and other inner-sphere adsorption, as these processes affect the charge carrier density in the surface state. This work also highlights an important synergistic effect of the two spectral analyses that enables EIS to be utilized in an in-depth investigation of mineral/water interfaces.
机译:使用无模型的使用奇异值分解的多变量分析来完善等效电路模型,以便使用电化学阻抗谱法在稀释的NaCl和NH4Cl溶液中探查赤铁矿/水界面的电化学性质。结果表明,表面质子化与矿物表面电荷载体的迁移和俘获直接相关。此外,除了双层电容最小之外,在电荷转移电阻最高的pH值下可以找到零电荷点。 NH 4+离子与表面的内层相互作用是通过增加电荷从质子化表面捕获电荷载体的电容以及较低的双层电容和开路电势来表明的。显然,赤铁矿的固有电化学活性取决于表面(去质子化)和其他内球吸附的程度,因为这些过程会影响表面状态下的载流子密度。这项工作还强调了两个光谱分析的重要协同作用,这使得EIS可以用于矿物质/水界面的深入研究。

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