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A Facile Strategy to Construct Amorphous Spinel-Based Electrocatalysts with Massive Oxygen Vacancies Using Ionic Liquid Dopant

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This article is published in Advanced Energy Materials.The article was published on 2018-09-01. It has received 174 citations till now. The article focuses on the topics: Oxygen evolution & Spinel.

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Citations
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The roles of oxygen vacancies in electrocatalytic oxygen evolution reaction

TL;DR: In this paper, a review of the recent development of manipulating the oxygen vacancies in electrocatalysts for enhancing OER performance is reviewed and the proposed mechanisms for the enhanced performance are discussed in detail.
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Utilizing the Space-Charge Region of the FeNi-LDH/CoP p-n Junction to Promote Performance in Oxygen Evolution Electrocatalysis.

TL;DR: P-n junctions are constructed in 3D free-standing FeNi-LDH/CoP/carbon cloth (CC) electrode, verifying the synergistic effect in the p-n junction.
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Anionic defect engineering of transition metal oxides for oxygen reduction and evolution reactions

TL;DR: In this article, a review of recent progress in manipulating the anion defects in transition metal oxides for enhancing their activity and stability is summarized and the proposed mechanisms for enhanced performance are discussed in detail.
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Recent Advances in Non‐Noble Bifunctional Oxygen Electrocatalysts toward Large‐Scale Production

TL;DR: In this paper, a review of recent advances in the development of non-noble electrocatalysts for ORR/OER reaction mechanisms is presented, in particular, rational design for enhancing the activity and stability and scalable synthesis toward the large-scale production of bifunctional oxygen ECs are highlighted.
References
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Opportunities and challenges for a sustainable energy future

TL;DR: This Perspective provides a snapshot of the current energy landscape and discusses several research and development opportunities and pathways that could lead to a prosperous, sustainable and secure energy future for the world.
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Sustainable Hydrogen Production

TL;DR: Identifying and building a sustainable energy system are perhaps two of the most critical issues that today's society must address.
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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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Design of electrocatalysts for oxygen- and hydrogen-involving energy conversion reactions

TL;DR: The emphasis of this review is on the origin of the electrocatalytic activity of nanostructured catalysts toward a series of key clean energy conversion reactions by correlating the apparent electrode performance with their intrinsic electrochemical properties.
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Design principles for oxygen-reduction activity on perovskite oxide catalysts for fuel cells and metal–air batteries

TL;DR: These findings reflect the critical influences of the σ orbital and metal-oxygen covalency on the competition between O(2)(2-)/OH(-) displacement and OH(-) regeneration on surface transition-metal ions as the rate-limiting steps of the ORR, and highlight the importance of electronic structure in controlling oxide catalytic activity.
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