Published online: March 15, 2018Conventional development of nanomaterials for efficient electrocatalysis is largely based on performance-oriented trial-and-error/iterative approaches, while a rational design approach at the atomic/molecular level is yet to be found. Here, inspired by a fundamental understanding of the mechanism for both oxygen and hydrogen evolution half reactions (OER/HER), a unique strategy is presented to engineer RuO₂ for superior alkaline water electrolysis through coupling with NiO as an efficient bifunctional promoter. Benefitting from desired potential-induced interfacial synergies, NiO-derived NiOOH improves the oxygen binding energy of RuO₂ for enhanced OER, and NiO also promotes water dissociation for enhanced HE...
Supplementary Information files for: Electronic coupling strategy to boost water oxidation efficienc...
Developing efficient and durable bifunctional electrocatalysts for oxygen reduction and evolution r...
Summary: Although electrochemical water splitting is an effective and green approach to produce oxyg...
Development of low-cost electrocatalysts toward oxygen evolution (OER) and hydrogen evolution reacti...
Developing low‐cost bifunctional electrocatalysts with superior activity for both the oxygen evoluti...
The development of low-cost, high-efficiency, and stable bifunctional electrocatalysts toward the hy...
The development of next-generation energy technologies, such as water-alkali electrolysers and rech...
Designing efficient bifunctional electrocatalysts with excellent activity and robust stability prese...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Developing high-active and low-cost bifunctional materials for catalyzing hydrogen evolution reactio...
Electrochemical water splitting has received significant attention recently for the production of gr...
Developing highly efficient low-cost electrocatalysts for both hydrogen evolution reaction (HER) and...
Electrochemical water splitting is a catalytic process in which water molecule can be catalytically ...
Developing a bifunctional electrocatalyst with remarkable performance viable for overall water split...
Identification and development of non-noble metal based electro-catalysts or electro-catalysts with ...
Supplementary Information files for: Electronic coupling strategy to boost water oxidation efficienc...
Developing efficient and durable bifunctional electrocatalysts for oxygen reduction and evolution r...
Summary: Although electrochemical water splitting is an effective and green approach to produce oxyg...
Development of low-cost electrocatalysts toward oxygen evolution (OER) and hydrogen evolution reacti...
Developing low‐cost bifunctional electrocatalysts with superior activity for both the oxygen evoluti...
The development of low-cost, high-efficiency, and stable bifunctional electrocatalysts toward the hy...
The development of next-generation energy technologies, such as water-alkali electrolysers and rech...
Designing efficient bifunctional electrocatalysts with excellent activity and robust stability prese...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Developing high-active and low-cost bifunctional materials for catalyzing hydrogen evolution reactio...
Electrochemical water splitting has received significant attention recently for the production of gr...
Developing highly efficient low-cost electrocatalysts for both hydrogen evolution reaction (HER) and...
Electrochemical water splitting is a catalytic process in which water molecule can be catalytically ...
Developing a bifunctional electrocatalyst with remarkable performance viable for overall water split...
Identification and development of non-noble metal based electro-catalysts or electro-catalysts with ...
Supplementary Information files for: Electronic coupling strategy to boost water oxidation efficienc...
Developing efficient and durable bifunctional electrocatalysts for oxygen reduction and evolution r...
Summary: Although electrochemical water splitting is an effective and green approach to produce oxyg...