电沉积法合成CoNi及其在水裂解电催化剂中的应用

None Chika Shafa Maura, None Muhammad Fathar Aulia, None Raudhatul Hadawiyah, None Wulan Kharisma Dera, None Hilman Syafei
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引用次数: 0

摘要

水裂解被认为是获得氢的一种非常有效的方法,打算用于可再生燃料的生产。然而,该技术的性能受到碱性环境下析氢反应和析氧反应动力学缓慢的限制,导致能量效率低下和电位需求过高。为了提高反应动力学和水的分解效率,需要一种具有良好效率的电催化剂。本研究的主要目的是构建一种促进水分解的钴镍(CoNi)电催化剂。本研究采用电沉积技术作为实验方法。研究结果表明,通过扫描电子显微镜和能量色散x射线光谱(EDX)分析,CoNi样品表现为扁平、圆形和团聚。元素组成分析表明,该合金的钴含量为20.51%,镍含量为79.49%;x射线衍射分析表明,该合金为立方晶型。电化学阻抗谱分析发现,CoNi与电解质溶液的电荷转移电阻为1.48 kΩ。从计时安培测试中收集的数据表明存在一致且不变的电流。循环伏安法测得Epa和Epc值分别为0.4469 V和0.3037 V,计算出∆E为0.1432 V。研究结果表明,通过电沉积技术合成的CoNi合金表现出一种性能有效的电催化剂,接近预期的结果。
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Synthesis of CoNi by Electrodeposition Technique and its Application as an Electrocatalyst for Water Splitting
Water splitting is regarded as a highly efficacious methodology for obtaining hydrogen, intending to be employed for the purpose of renewable fuel production. However, the performance of this technique is constrained by the sluggish kinetics of the hydrogen evolution reaction in alkaline environments and the oxygen evolution reaction, which leads to significant energy inefficiency and excessive potential requirements. To enhance the reaction kinetics and efficiency of water splitting, there exists a pertinent requirement for an electrocatalyst that exhibits commendable efficiency. The primary objective of this study is to construct a cobalt-nickel (CoNi) electrocatalyst that facilitates water splitting. The present study employs the technique of electrodeposition for its experimental procedures. The findings of the study indicated that the CoNi sample, as observed through scanning electron microscopy with energy dispersive X-ray spectroscopy (EDX) analysis, exhibited a flattened, circular form and agglomeration. The EDX analysis yielded elemental composition results indicating a cobalt content of 20.51% and nickel content of 79.49% The X-ray diffractometer analysis reveals that the CoNi metal alloy has manifested a crystalline structure with a cubic configuration. The electrochemical impedance spectroscopy found that the charge transfer resistance of CoNi with the electrolyte solution was 1.48 kΩ. The data collected from the chronoamperometry test indicates the presence of a consistent and unchanging electrical current. Additionally, the cyclic voltammetry test presented Epa and Epc values of 0.4469 V and 0.3037 V, respectively, leading to a calculated ∆E of 0.1432 V. The research findings establish that the CoNi alloy, synthesized via the electrodeposition technique, exhibited a performance-effective electrocatalyst that closely approached the desired outcome.
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