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Self-supported iron-doped nickel sulfide as efficient catalyst for electrochemical urea and hydrazine oxidation reactions

机译:自支撑式铁掺杂硫化镍作为电化学尿素和肼氧化反应的高效催化剂

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摘要

The electrochemical oxidation of urea and hydrazine over self-supported Fe-doped Ni3S2/NF (Fe-Ni3S2/NF) nanostructured material is presented. Among the various reaction con-ditions Fe-Ni3S2/NF-2 prepared at 160 degrees C for 8 h using 0.03 mM Fe(NO3)(3) shows the best results for the hydrazine and urea oxidation reactions. The potential values of 0.36, 1.39, and 1.59 V are required to achieve the current density of the 100 mA cm(-2) in 1 M hydrazine (Hz), 0.33 M urea, and 1 M KOH electrolyte, respectively. The onset potential in 1 M KOH, 0.33 M Urea +1 M KOH, and 1 M Hz + 1 M KOH values are 1.528, 1.306, and 0.176 respec-tively. The Fe-Ni3S2/NF-2 shows stable performance at 10 mA cm-2 until 50 h and at 60 mA cm(-2) over the 25 h. A cell of PtC//Fe-Ni3S2/NF-2 requires the potential of 0.49, 1.46, and 1.59 V for the hydrogen production in 1 M Hz + 1 M KOH, 0.33 M Urea +1 M KOH, and 1 M KOH electrolyte, respectively, at a current density of 10 mA cm(-2), and almost 90 stable for the hydrogen production over the 80 h in all electrolytes. The improvement of the chemical kinetics of urea and hydrazine oxidation is due to the synergistic effect of the adsorption and fast electron transfer reaction on Fe-Ni3S2/NF-2. The doped Fe ion facili-tates the fast electron transfer and the surface of Ni3S2 support to the urea and hydrazine molecule adsorption.(C) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:介绍了尿素和肼在自支撑Fe掺杂Ni3S2/NF(Fe-Ni3S2/NF)纳米结构材料上的电化学氧化。在各种反应条件下,使用0.03 mM Fe(NO3)(3)在160°C下制备8 h的Fe-Ni3S2/NF-2对肼和尿素氧化反应效果最好。在1 M 肼 (Hz)、0.33 M 尿素和 1 M KOH 电解液中分别达到 100 mA cm(-2) 的电流密度,需要 0.36、1.39 和 1.59 V 的电位值。1 M KOH、0.33 M 尿素 +1 M KOH 和 1 M Hz + 1 M KOH 值的起始电位分别为 1.528、1.306 和 0.176。Fe-Ni3S2/NF-2在10 mA cm-2下表现出稳定的性能,直到50 h,在60 mA cm(-2)下表现出稳定的25 h性能。PtC//Fe-Ni3S2/NF-2电池在1 M Hz + 1 M KOH、0.33 M 尿素+1 M KOH和1 M KOH电解质中分别需要0.49、1.46和1.59 V的电位,在10 mA cm(-2)的电流密度下,所有电解质在80 h内产氢的稳定性几乎为90%。尿素和肼氧化化学动力学的改善是由于吸附和快速电子转移反应对Fe-Ni3S2/NF-2的协同作用。掺杂的Fe离子促进了电子的快速转移和Ni3S2表面对尿素和肼分子的吸附。(c) 2022 Hydrogen Energy Publications LLC.,由爱思唯尔有限公司出版。保留所有权利。

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