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Hierarchically constructed Ag nanowires shelled with ultrathin Co-LDH nanosheets for advanced oxygen evolution reaction

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TLDR
In this article, a hybrid of Co-LDH nanosheets shells grown on Ag nanowires (NWs) cores (Ag@Co)-LDH was constructed and applied as a favorable OER electrocatalyst.
Abstract
It is highly desirable to cut down the electron transfer resistance, improve both site activity and site populations of layered double hydroxides (LDHs) for enhanced electrochemical activity of oxygen evolution reaction (OER). Herein, the hybrid that Co-LDH nanosheets shells grown on Ag nanowires (NWs) cores (Ag@Co-LDH) was constructed and applied as a favorable OER electrocatalyst. The high conductivity of Ag NWs and heterointerface between Ag NWs and Co-LDH gravely accelerate electron transfer. Co-LDH with ultrathin sheet-like structure and abundant grain boundary defects effectively provide lots of active sites. The optimized local environment of Co atoms by Ag dopants and plentiful amorphous regions strongly enhance the intrinsic activity of active site. Therefore, the as-prepared Ag@Co-LDH demonstrates distinguished OER activity with a low overpotential of 217 mV at the current density of 10 mA cm−2, which is superior to most reported advanced OER electrocatalysts and even commercial Ir/C. Moreover, benefiting from the unique structure and stable heterointerface, Ag@Co-LDH also exhibits robust cycling stability and long-term durability proved by accelerated degradation test (ADT) and galvanostatic test, respectively. This finding provides a practical design direction for high-performance LDH-based OER electrocatalysts.

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Citations
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Journal ArticleDOI

Recent Development and Future Perspectives of Amorphous Transition Metal‐Based Electrocatalysts for Oxygen Evolution Reaction

TL;DR: In this paper , the state-of-the-art amorphous transition metal-based OER electrocatalysts, involving oxides, hydroxides, sulfides, phosphides, borides, and their composites, as well as their practical applications in the OER are discussed.
Journal ArticleDOI

Surface/interface engineering for fabricating hierarchical Ir doped NiMoO4 covered by CoMn layered double hydroxide toward oxygen evolution reaction

TL;DR: In this article , the surface/interface engineering is regarded as the most effective method for activating the active sites and modulating the electronic structure, which are two crucial factors determining the electrocatalytic performance.
Journal ArticleDOI

Magnetic field assisted electrocatalytic oxygen evolution reaction of nickel-based materials

TL;DR: In this article , the dominant role of the magnetoresistance effect caused by spin electron scattering in the oxygen evolution reaction is revealed through an in situ tunable magnetic fieldelectrochemical testing system.
Journal ArticleDOI

Interface design and composition regulation of cobalt-based electrocatalysts for oxygen evolution reaction

TL;DR: In this article , a new prospect for the design of efficient cobalt OER catalytic materials and their application in industrial large-scale energy output strategies is proposed for different media environment.
Journal ArticleDOI

Trimetallic CoNiFe-layered double hydroxides: Electronic coupling effect and oxygen vacancy for boosting water splitting

TL;DR: In this article , a trimetallic CoNiFe-layered double hydroxide (LDH) hollow superstructure grown on carbon cloth is ingeniously fabricated through an aging and etching-coprecipitating method.
References
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Journal ArticleDOI

Electrocatalysis for the oxygen evolution reaction: recent development and future perspectives

TL;DR: This review acquaints some materials for performing OER activity, in which the metal oxide materials build the basis of OER mechanism while non-oxide materials exhibit greatly promising performance toward overall water-splitting.
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Recent Progress in Cobalt‐Based Heterogeneous Catalysts for Electrochemical Water Splitting

TL;DR: Current progress in this field is summarized here, especially highlighting several important bifunctional catalysts, and various approaches to improve or optimize the electrocatalysts are introduced.
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Electrocatalytic Oxygen Evolution Reaction (OER) on Ru, Ir, and Pt Catalysts: A Comparative Study of Nanoparticles and Bulk Materials

TL;DR: In this article, the intrinsic catalytic activity and durability of carbon supported Ru, Ir, and Pt nanoparticles and corresponding bulk materials for the electrocatalytic oxygen evolution reaction (OER) were examined by surface-sensitive cyclic voltammetry.
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High-index faceted Ni3S2 nanosheet arrays as highly active and ultrastable electrocatalysts for water splitting.

TL;DR: Experimental results and theoretical calculations indicate that Ni3S2/NF's excellent catalytic activity is mainly due to the synergistic catalytic effects produced in it by its nanosheet arrays and exposed {2̅10} high-index facets.
Journal ArticleDOI

Accurate and efficient algorithm for Bader charge integration

TL;DR: An efficient, accurate method to integrate the basins of attraction of a smooth function defined on a general discrete grid and apply it to the Bader charge partitioning for the electron charge density is proposed.
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