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Fe and P dual-doped nickel carbonate hydroxide/carbon nanotube hybrid electrocatalysts for an efficient oxygen evolution reaction

机译:铁和P dual-doped碳酸镍氢氧化/碳纳米管混合electrocatalysts一个有效的氧发生反应

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摘要

Designing cost-effective and highly active oxygen evolution reaction (OER) electrocatalysts is critical for large-scale hydrogen production from electrocatalytic water splitting. Herein, Fe and P dual-doped nickel carbonate hydroxide/carbon nanotubes (Fe, P–NiCH/CNTs) were fabricated through a solvothermal method. By virtue of the optimized electronic structure, improved conductivity and enriched active sites, the as-fabricated Fe, P–NiCH/CNT hybrid electrocatalyst exhibits superior OER activity, with a low overpotential of 222 mV at 20 mA cm−2 and robust durability, confirming its potential as a highly efficient OER electrocatalyst. Moreover, theoretical calculations demonstrate that the doped Fe and surface adsorbed PO43− can regulate the electronic structure of evolved NiOOH and decrease the energy barrier of the rate-determining step, thus leading to improved OER activity. The strategy presented in this work can also be employed to fabricate other transition metal carbonate hydroxides for various electrocatalytic applications.
机译:设计有成本效益的和高度活性氧(在)electrocatalysts进化反应大规模生产氢的关键electrocatalytic水分裂。氢氧化P dual-doped碳酸镍/碳纳米管(铁、P-NiCH /碳纳米管)是捏造的通过solvothermal方法。优化电子结构,改善电导率和丰富活跃的网站,纯属捏造铁、P-NiCH CNT /混合electrocatalyst展品优越OER活动,马过电压低222 mV在20厘米−2和健壮的耐久性,确认其潜力作为一种高效的OER electrocatalyst。此外,理论计算证明掺杂铁和表面吸附PO43−即可规范发展的电子结构NiOOH和减少的能量势垒速率决定步骤,从而导致改善在活动。还可以用来制造其他过渡金属碳酸盐为各种各样的氢氧化物electrocatalytic应用程序。

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