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Interface Engineering of Co(OH)(2)/Ag/FeP Hierarchical Superstructure as Efficient and Robust Electrocatalyst for Overall Water Splitting

机译:CO(OH)(2)/ AG / FEP分层上部结构的界面工程为整体水分裂的高效且鲁棒电催化剂

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摘要

Rational design and preparation of electrocatalyst with optimal component and interfaces, which can work well for both hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) in alkaline media, are of great importance in practical water splitting. Herein, a multiscale structure surface engineering approach to construct Co(OH)(2)/Ag/FeP hybrid as efficient electrocatalysis for water splitting in alkaline media is reported. By optimizing the component ratio and engineering interfacial structure, the Co(OH)(2)/Ag/FeP hybrid eletrocatalyst exhibits promoted HER and OER activity as well as stability in alkaline media, achieving an overpotential of 118 and 236 mV at a current density of 10 mA cm(-2), respectively. Further experimental characterizations demonstrate the electron structure changes in Co(OH)(2)/Ag/FeP hybrid after constructing the interfaces, which is beneficial to generate low-charge state Fe' and high-oxidized Co3+/4+. The first-principle calculations reveal that the dissociation of H2O at the interface region is energetically favorable, which is responsible for the enhanced HER and OER activity. Furthermore, two-electrode alkaline water electrolyzer constructed by Co(OH)(2)/Ag/FeP hybrid electrocatalysts only requires a voltage of 1.56 V to afford a current density of 10 mA cm(-2), which is superior to the commercial Pt/C IrO2 catalytic couple and makes it a promising material to be employed as effective bifunctional catalysts for overall water splitting.
机译:具有最佳成分和界面的理性设计和耐催化剂的制备,可以适用于碱性介质中的氢进化反应(她)和氧气进化反应(Oer),在实际水分裂中具有重要意义。在此,报道了构建CO(OH)(2)/ AG / FEP杂种的多尺度结构表面工程方法,作为碱性介质中的水分解的有效电常放分析。通过优化组分比和工程界面结构,CO(OH)(2)/ AG / FEP杂化Eletrocatalyst展示展示促进了她和oer活性以及碱性介质中的稳定性,在电流密度下实现118和236mV的过电位分别为10 mA cm(-2)。进一步的实验表征证明了在构建界面之后Co(OH)(2)/ Ag / FEP杂种中的电子结构变化,这是有益的产生低电荷状态Fe'和高氧化CO 3 + / 4 +。第一原理计算表明,界面区域的H2O的解离能够充满活力,这负责增强的她和OER活动。此外,由CO(OH)(2)/ AG / FEP杂化电催化剂构建的两电极碱性水电解槽仅需要1.56V的电压,以提供10 mA cm(-2)的电流密度,其优于商业Pt / C IRO2催化耦合,使其成为有效的材料,作为用于总水分裂的有效双官能催化剂。

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