电化学合成单硒化铁薄膜

A. Zeynalova, S. Javadova, V. Majidzade, A. Aliyev
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引用次数: 2

摘要

本研究以Pt和Ni为电极,采用电位动力学方法记录了循环极化曲线和线性极化曲线,研究了铁、硒和Fe-Se薄膜沉积过程的动力学和机理。测定了电解质各组分在Pt电极上的单独电位区和共沉积电位区。为了确定最佳电解方式和电解液组成,研究了各种因素(初始组分浓度、温度等)对Fe-Se共电沉积过程的影响。此外,在Ni电极表面沉积Fe-Se样品,在4500C下进行热处理,并通过SEM和x射线相分析方法进行研究。元素分析表明,薄膜中Fe含量为42.2%,Se含量为57.8%。
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ELECTROCHEMICAL SYNTHESIS OF IRON MONOSELENIDE THIN FILMS
In the presented research work, the kinetics and mechanism of the deposition process of thin iron, selenium and Fe-Se films have been studied by recording a cyclic and linear polarization curves by potentiodynamic method using Pt and Ni electrodes. Individual and co-deposition potential areas of the components of the electrolyte on the Pt electrode were determined. In order to determine the optimal electrolysis mode and electrolyte composition, the effect of various factors (concentration of initial components, temperature, etc.) on the co-electrodeposition process of Fe-Se was studied. In addition, Fe-Se samples deposited on the surface of Ni electrodes were thermally treated at 4500C and studied by SEM and X-ray phase analysis methods. Elemental analysis of the films shows that they contain 42.2% Fe and 57.8% Se.
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