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首页> 外文期刊>Nanoscale >Modulated transition metal-oxygen covalency in the octahedral sites of CoFe layered double hydroxides with vanadium doping leading to highly efficient electrocatalysts
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Modulated transition metal-oxygen covalency in the octahedral sites of CoFe layered double hydroxides with vanadium doping leading to highly efficient electrocatalysts

机译:调制过渡金属氧的共价八面体的钴铁分层的两倍氢氧化物与钒掺杂导致高度高效electrocatalysts

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摘要

The development of efficient and stable non-noble-metal electrocatalytic materials for the oxygen evolution reaction (OER) is a huge and important challenge at present. Herein, we report the prominent enhancement of OER activity via doping vanadium into CoFe-based layered double hydroxide (LDH) electrocatalysts. Electrochemical characterization shows that the Co2Fe0.5V0.5 LDH grown on carbon papers (CPs) has an enormous electrochemical surface area (ECSA) and exhibits the smallest overpotential of 242 mV at 10 mA cm(-2), which only requires a small Tafel slope of 41.4 mV dec(-1) in 1 M KOH solution. The X-ray photoelectron spectroscopy (XPS) peak position of Co, Fe and O moves slightly to higher binding energy, elucidating the improved covalency of the metal-oxygen bond after V doping. DFT+U simulation indicates that the outstanding electrocatalytic activity of Co2Fe0.5V0.5 could be ascribed to the increased metal-oxygen covalency in LDH after V element doping, and facilitates the charge-transfer from oxygen to the metal. This finely tuned strategy by V doping into the CoFe-based LDH matrix can adjust the covalency of metal-oxygen bridges and enhance its electrocatalytic activity for the OER. In this work, we also present a general method to study various highly efficient metal hydroxide catalysts for the OER.
机译:高效、稳定的发展non-noble-metal electrocatalytic材料氧进化反应(OER)是一个巨大的和目前重要的挑战。在活动的显著增强掺杂钒CoFe-based分层的两倍氢氧化物(LDH) electrocatalysts。表征表明,Co2Fe0.5V0.5 LDH生长在碳纸(CPs)有一个巨大的电化学表面积(ECSA)发起和展品最小的过电压242 mV 10马厘米(2),它只需要一个小塔费尔斜率41.4 mV 12月(1)在1 M KOH溶液。光电子能谱(XPS)峰值的位置有限公司、铁和O动作稍微更高的约束力能源,阐明共价的改进金属氧键后V兴奋剂。仿真表明,突出electrocatalytic Co2Fe0.5V0.5活动被归因于金属氧增加在LDH共价V元素掺杂和促进氧气的电荷转移的金属。可以调整到CoFe-based LDH矩阵共价的金属氧桥梁和增强OER electrocatalytic活动。工作中,我们也提出了一个通用方法研究各种高效金属氢氧化物OER的催化剂。

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