High-entropy layered hydroxide for efficient and sustainable seawater oxidation

被引:5
作者
Pal, Santanu [1 ,2 ]
Khatun, Sakila [1 ,2 ]
Roy, Poulomi [1 ,2 ]
机构
[1] CSIR, Cent Mech Engn Res Inst CMERI, Mahatma Gandhi Ave, Durgapur 713209, W Bengal, India
[2] Acad Sci & Innovat Res AcSIR, CSIR Human Resource Dev Ctr CSIR HRDC, Ghaziabad 201002, Uttar Pradesh, India
来源
MATERIALS ADVANCES | 2024年 / 5卷 / 12期
关键词
OXYGEN EVOLUTION; CORROSION BEHAVIOR; ELECTROCATALYSIS; CATALYST; LDH;
D O I
10.1039/d3ma00941f
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Developing efficient and stable electrocatalysts for high-current-density seawater oxidation remains challenging due to competitive chlorine evolution reaction at the anode. High-entropy layered hydroxides with different compositions, unique layered structures, and high mixing entropy have the potential to act as efficient as well as sustainable electrocatalysts for direct seawater splitting. Here, we report the development of a novel high-entropy NiCrCoFeMo layered hydroxide (HE-LH) material using a single-step hydrothermal method, which was found to be superior to its quaternary and ternary counterparts due to the availability of a larger number of electroactive sites and better chloride-restricting ability of interlayer anions. The HE-LH achieved a 100 mA cm-2 current density at overpotentials of only 242, 258 and 281 mV in 1 M KOH, 1 M KOH + seawater and 6 M KOH + seawater, respectively. The robustness due to the anti-corrosion ability of HE-LH has also been explored in highly alkaline (6 M KOH) real seawater, which showed stability over 140 h at an operating current density of 500 mA cm-2. The generation of beta-NiOOH, also as active sites, during a prolonged electrooxidation process in seawater-based electrolyte was found to be beneficial to maintain such high activity. The combination of HE-LH with Pt/C in a two-electrode system also offered a high current density of 500 mA cm-2 at a cell voltage of only 1.92 V in highly alkaline (6 M KOH) real seawater electrolyte and exhibited stability over 50 h. With these excellent performances, the developed novel HE-LH is believed to have the potential for practical exploration in seawater electrolysers. High-entropy NiCrCoFeMo layered hydroxide has been identified as a potential electrocatalyst for sustainable seawater oxidation with high activity and great corrosion resistance ability.
引用
收藏
页码:5156 / 5166
页数:11
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