Başak Doğru Mert, Beyza Nur Demir, Cansu Edis, Şenay Akyıldız, Ceyla Özgür, Mehmet Erman Mert
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引用次数: 0
摘要
通过静电法制备了镍、钴和钼支撑的泡沫镍(NiF-NiCoMo),并考察了其在碱性介质中对甲醇的电氧化作用。利用场发射扫描电子显微镜、能量色散 X 射线和 X 射线衍射分析实现了表征。电化学行为是通过循环伏安法和计时器分析法确定的。通过对每种过渡金属(镍、钴和钼)进行一元、二元和三元修饰(5、10 和 15 微克),监测了每种过渡金属对 NiF 电催化性能的贡献。实验确定了催化剂用量、甲醇浓度和扫描速率参数的影响。使用 Design-Expert 软件对独立参数对甲醇电氧化的影响进行了统计分析。该方法的主要优点之一是能够利用有限的实验性能分析多个参数。所建立的模型显示,9.41 和 14.03 µg 催化剂用量分别是 NiF-NiMo 和 NiF-NiCoMo 达到最佳情况的合适值。
Production of NiCoMo-Supported Ni Foam for Electrocatalytic Oxidation of Methanol: Experimental and RSM Analysis
The Ni-, Co-, and Mo-supported Ni foam (NiF–NiCoMo) was produced via galvanostatic method, and electrooxidation of methanol in alkaline medium was examined. The characterization was achieved using field emission scanning electron microscopy, energy-dispersive X-ray, and X-ray diffraction analysis. The electrochemical behavior was determined via cyclic voltammetry and chronoamperometry analysis. The contribution of each transition metal to electrocatalytic performance of NiF was monitored via mono, binary, and ternary modifications of each transition metal (Ni, Co, and Mo) for several amounts (5, 10, and 15 μg). Experiments were performed to determine the influence of catalyst amounts, methanol concentration, and scan rate parameters. The impacts of independent parameters on methanol electrooxidation were statistically investigated using Design-Expert software. The ability to analyze multiple parameters with a limited number of experimental performances is one of the method’s key benefits. The developed model showed that 9.41 and 14.03 µg catalyst amounts were the appropriate values for NiF–NiMo and NiF–NiCoMo achieving optimal circumstances, respectively.
期刊介绍:
King Fahd University of Petroleum & Minerals (KFUPM) partnered with Springer to publish the Arabian Journal for Science and Engineering (AJSE).
AJSE, which has been published by KFUPM since 1975, is a recognized national, regional and international journal that provides a great opportunity for the dissemination of research advances from the Kingdom of Saudi Arabia, MENA and the world.