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首页> 外文期刊>Chemical science >Extraction of nickel from NiFe-LDH into Ni2P@NiFe hydroxide as a bifunctional electrocatalyst for efficient overall water splitting
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Extraction of nickel from NiFe-LDH into Ni2P@NiFe hydroxide as a bifunctional electrocatalyst for efficient overall water splitting

机译:从NiFe-LDH中将镍萃取到Ni2P @ NiFe氢氧化物中作为双功能电催化剂,以有效地进行总水分解

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摘要

The development of highly efficient, low-cost and stable electrocatalysts for overall water splitting is highly desirable for the storage of intermittent solar energy and wind energy sources. Herein, we show for the first time that nickel can be extracted from NiFe-layered double hydroxide (NiFe-LDH) to generate an Ni _(2) P@FePO _( x ) heterostructure. The Ni _(2) P@FePO _( x ) heterostructure was converted to an Ni _(2) P@NiFe hydroxide heterostructure (P-NiFe) during water splitting, which displays high electrocatalytic performance for both the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) in 1.0 M KOH solution, with an overpotential of 75 mV at 10 mA cm ~(?2) for HER, and overpotentials of 205, 230 and 430 mV at 10, 100 and 1000 mA cm ~(?2) for OER, respectively. Moreover, it could afford a stable current density of 10 mA cm ~(?2) for overall water splitting at 1.51 V in 1.0 M KOH with long-term durability (100 h). This cell voltage is among the best reported values for bifunctional electrocatalysts. The results of theoretical calculations demonstrate that P-NiFe displays optimized adsorption energies for both HER and OER intermediates at the nickel active sites, thus dramatically enhancing its electrocatalytic activity.
机译:对于间歇性太阳能和风能源的存储,非常需要开发用于整体水分解的高效,低成本和稳定的电催化剂。在本文中,我们首次表明可以从NiFe层状双氢氧化物(NiFe-LDH)中提取镍,以生成Ni_(2)P @ FePO_(x)异质结构。 Ni _(2)P @ FePO _(x)异质结构在水分解过程中转变为Ni _(2)P @ NiFe氢氧化物异质结构(P-NiFe),这对氢析出反应(HER )和氧气逸出反应(OER)在1.0 M KOH溶液中,对于HER在10 mA cm〜(?2)处有75 mV的过电势,在10、100和1000 mA cm〜下有205、230和430 mV的过电势(?2)分别代表OER。此外,对于在1.0M KOH中1.51 V的总水分解,它可以提供10 mA cm〜(?2)的稳定电流密度,并具有长期耐久性(100 h)。该电池电压是双功能电催化剂报告的最佳值之一。理论计算的结果表明,P-NiFe在镍活性位点对HER和OER中间体均显示出最佳的吸附能,从而显着增强了其电催化活性。

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