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An investigation of Fe incorporation on the activity and stability of homogeneous (FexNi1-x)(2)P solid solutions as electrocatalysts for alkaline hydrogen evolution

机译:对均质(FexNi1-X)(2)P固溶体作为碱性氢逸出的电催化剂的活性和稳定性的研究

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摘要

Ni2P has been intensively investigated for hydrogen evolution reaction (HER) in recent years since the HER activity of Ni2P (001) is theoretically superior to Pt. Most of these works have focused on acid system as Ni2P is unstable in alkaline media. However, alkaline water splitting is more practical for industry due to the lack of suitable acidic oxygen evolution catalyst. Thus, providing an efficient alkaline HER catalyst by enhancing the stability and activity of Ni2P is needed. Herein, we have grown mesoporous (FexNi1-x)(2)P nanosheets on Ni foam (NF) as HER catalyst with activities being related to Fe/Ni ratio. FeNiP/NF with Fe/Ni ratio of 5/5 and high- density exposure of (001) surface shows much better stability and HER activity in alkaline than Ni2P. Our experimental results reveal that the homogeneous lattice substitution of Fe modified the electronic structure of Ni2P, enhanced the intrinsic activity and the number of active sites. Density functional theory calculation reveals that the Fe incorporation improves the HER activity of the highly exposed FeNiP (001) surface by reducing the energy barriers of HER reactants (H and H2O) adsorption compared with Ni2P. This work provides an effective pathway for the future development of HER catalyst in alkaline conditions by introducing hetero-atom into the host lattice. (c) 2018 Elsevier Ltd. All rights reserved.
机译:由于其Ni2P(001)的活性在理论上优于Pt,因此近年来,Ni2P被密深针对氢进化反应(她)进行了近年来。由于Ni2P在碱性介质中不稳定,这些作品中的大部分都集中在酸系统上。然而,由于缺乏合适的酸性氧换催化剂,碱性水分裂对于工业而言更加实用。因此,通过增强Ni 2P的稳定性和活性,提供一种有效的碱性催化剂。在此,我们在Ni泡沫(NF)上生长了介孔(FexNi1-X)(2)P anosheS,作为其催化剂,其具有与Fe / Ni比率有关的活性。 FENIP / NF具有5/5的Fe / Ni比率和(001)表面的高密度暴露,显示出比Ni2P碱性更好的稳定性和她的活性。我们的实验结果表明,Fe改性的均匀晶格取代为Ni2P的电子结构,增强了内在活动和活性位点的数量。密度函数理论计算揭示了Fe掺入通过减少与Ni 2P相比的反应物(H和H2O)吸附的能量屏障来改善高度暴露的Fenip(001)表面的活性。通过将异质原子引入宿主格子,这项工作提供了一种有效的途径,以便通过将异质原子引入宿主晶格中的碱性条件下的催化剂。 (c)2018年elestvier有限公司保留所有权利。

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