Low-Pressure Plasma-Processed NiCo Metal–Organic Framework for Oxygen Evolution Reaction and Its Application in Alkaline Water Electrolysis Module

IF 3 Q2 MATERIALS SCIENCE, COMPOSITES
Yu-Lun Su, Shuo-En Yu, I‐Chih Ni, Chih-I Wu, Yong-Song Chen, Yi-Cheng Chuang, I-Chun Cheng, Jian-Zhang Chen
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Abstract

Ar, Ar/H2 (95:5), and Ar/O2 (95:5) plasmas are used for treating the NiCo metal–organic framework (MOF), and the plasma-processed NiCo MOF is applied for catalyzing the oxygen evolution reaction (OER) in a 1 M KOH electrolyte. Linear sweep voltammetry measurements show that after plasma treatment with Ar/H2 (95:5) and Ar gases, the overpotential reaches 552 and 540 mV, respectively, at a current density of 100 mA/cm2. The increase in the double-layer capacitance further confirms the enhanced oxygen production activity. We test the Ar plasma-treated NiCo MOF as an electrocatalyst at the OER electrode and Ru as an electrocatalyst at the hydrogen evolution reaction (HER) electrode in the alkaline water electrolysis module. The energy efficiency of the electrolyzer with the Ar plasma-processed NiCo-MOF catalyst increases from 54.7% to 62.5% at a current density of 500 mA/cm2 at 25 °C. The alkaline water electrolysis module with the Ar plasma-processed catalyst also exhibits a specific energy consumption of 5.20 kWh/m3 and 4.69 kWh/m3 at 25 °C and 70 °C, respectively. The alkaline water electrolysis module performance parameters such as the hydrogen production rate, specific energy consumption, and energy efficiency are characterized at temperatures between 25 °C and 70 °C. Our experimental results show that the NiCo MOF is an efficient OER electrocatalyst for the alkaline water electrolysis module.
用于氧进化反应的低压等离子体处理镍钴金属有机框架及其在碱性水电解模块中的应用
使用氩气、氩气/H2 (95:5) 和氩气/氧气 (95:5) 等离子体处理镍钴金属有机框架 (MOF),并将等离子体处理后的镍钴金属有机框架用于催化 1 M KOH 电解质中的氧进化反应 (OER)。线性扫频伏安法测量结果表明,用 Ar/H2 (95:5) 和 Ar 气体进行等离子处理后,在 100 mA/cm2 的电流密度下,过电位分别达到 552 mV 和 540 mV。双层电容的增加进一步证实了制氧活性的增强。在碱性水电解模块中,我们测试了经氩等离子体处理的 NiCo MOF 作为 OER 电极的电催化剂和 Ru 作为氢进化反应(HER)电极的电催化剂。在 25 °C、电流密度为 500 mA/cm2 时,使用氩等离子体处理的 NiCo-MOF 催化剂的电解槽能效从 54.7% 提高到 62.5%。使用氩等离子体催化剂的碱性水电解模块在 25 °C 和 70 °C 条件下的能耗分别为 5.20 kWh/m3 和 4.69 kWh/m3。碱性水电解模块的性能参数,如制氢率、比能耗和能效,是在 25 °C 和 70 °C 温度下表征的。实验结果表明,镍钴 MOF 是碱性水电解模块的高效 OER 电催化剂。
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来源期刊
Journal of Composites Science
Journal of Composites Science MATERIALS SCIENCE, COMPOSITES-
CiteScore
5.00
自引率
9.10%
发文量
328
审稿时长
11 weeks
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