Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Cu²⁺ as a dynamic director for Ce-incorporated (CoFeNiCuCe)₉S₈ nanoballs for multifunctional electrocatalysis

作者:Sonu Kumar, Hairong Zhao, H. R. Haris, Mukaddar Sk, Dong Lizhuang, Mohammad Mehdi Rashidi, Mahesh Kumar Ravva, Muhammad Moin, Marek Piotrowski, Sitaramanjaneya Mouli Thalluri, Udayabhaskararao Thumu · 发表于:Communications Chemistry · 年份:2026 · DOI:10.1038/s42004-026-01887-x · 被引用次数:4 · 研究领域:Electrocatalysts for Energy Conversion、High Entropy Alloys Studies、CO2 Reduction Techniques and Catalysts

High-entropy metal sulfides (HEMSs) have emerged as a new class of electrocatalysts, but their synthesis often faces challenges due to their inherent complexity arising from multi-metal interactions, especially with elements having large differences in atomic/ionic sizes, such as the redox-active rare-earth elements. Here, we report a low-temperature (200°C) hydrothermal strategy to fabricate Ce-incorporated (CoFeNiCuCe)9S8 nanoballs by leveraging Cu2⁺ as a dynamic director for this phase evolution. Time-resolved studies reveal a multistage growth pathway involving cation exchange, lattice strain-driven reconstruction, and coalescence of various low and medium entropy intermediates (CoFeNi)9S8, CuS/(CoFeNi)9S8, (CoFeNiCu)9S8, Ce2S3, Ce2S3/(CoFeNi)9S8, (CoFeNiCuCe)/S nanoplates) into monodisperse (CoFeNiCuCe)₉S₈ HEMS nanoballs. By systematically varying Cu:Ce ratios, we obtain five distinct configurations, and Ce-rich HEMS-4 (Cu:Ce = 1:4) exhibits superior multifunctional electrocatalytic performance, outperforming a series of lower- (Co9S8, (NiFe)9S8, and (CoNiFe)9S8), medium-((CoNiFeCu)9S8), and high-entropy ((CoNiFeCuCe)9S8) analogues in the oxygen evolution reaction (OER; η10 = 175 mV, η100 = 260 mV), urea oxidation reaction (UOR; 1.277 V and 1.336 V at 10 and 100 mA.cm⁻2), hydrogen evolution reaction (HER; η10 = 85 mV), and nitrite reduction (NO2RR; 0.112 V at 100 mA.cm⁻2). Post-catalytic and in-situ Raman analyses, in conjunction with density functional theory (DFT), sho...