For water-splitting catalysis, the activity and performance of transition-metal-based catalysts can be accelerated by modular designing of the system with a hybrid combination. Here, a unique, nanofunctional three-dimensional (3D) substrate–catalyst hybrid assembly with mutually related high conductivity, improved electronic structure, flexibility, and redox behavior, and a plethora of surface-active sites is developed, resulting in remarkable oxygen evolution reaction (OER)/hydrogen evolution reaction (HER) activity from a simple and single catalytic platform. The hybrid and synergistic combination of controlled electrodeposited CoNPs on 3D Aunano substrates reveals unprecedented water-splitting activity with very promising kinetics and su...
The stability of electrocatalysts grown on substrates is a significant challenge for the constructio...
The stability of electrocatalysts grown on substrates is a significant challenge for the constructio...
Oxygen evaluation reaction (OER) is the most important reaction in hydrogen production from waterspl...
Electrocatalytic water splitting to an anodic oxygen evolution reaction (OER) and a cathodic hydroge...
Electrocatalytic water splitting into H-2 and O-2 is a key technology for carbon-neutral energy. Her...
7Water is the most abundant, renewable source of hydrogen on our planet. Appropriate catalytic mater...
Water electrocatalytic splitting is considered as an ideal process for generating H-2 without byprod...
Water splitting (WS) has attracted increasing attention for producing highly pure hydrogen and oxyge...
Rational design and preparation of electrocatalyst with optimal component and interfaces, which can ...
Electrolytic water splitting has the capability to store the electricity generated from renewable en...
Electrochemical water splitting has attracted significant attention as a key pathway for the develop...
In recent years, a promising role of plasmonic metal nanoparticles (NPs) has been demonstrated towar...
Published online: March 15, 2018Conventional development of nanomaterials for efficient electrocatal...
A family of dealloyed metal–oxide hybrid (M1M2@M1Ox) core@shell nanoparticle catalysts is demonstrat...
Developing exceedingly efficient, cost-effective, and environmentally friendly bifunctional catalyst...
The stability of electrocatalysts grown on substrates is a significant challenge for the constructio...
The stability of electrocatalysts grown on substrates is a significant challenge for the constructio...
Oxygen evaluation reaction (OER) is the most important reaction in hydrogen production from waterspl...
Electrocatalytic water splitting to an anodic oxygen evolution reaction (OER) and a cathodic hydroge...
Electrocatalytic water splitting into H-2 and O-2 is a key technology for carbon-neutral energy. Her...
7Water is the most abundant, renewable source of hydrogen on our planet. Appropriate catalytic mater...
Water electrocatalytic splitting is considered as an ideal process for generating H-2 without byprod...
Water splitting (WS) has attracted increasing attention for producing highly pure hydrogen and oxyge...
Rational design and preparation of electrocatalyst with optimal component and interfaces, which can ...
Electrolytic water splitting has the capability to store the electricity generated from renewable en...
Electrochemical water splitting has attracted significant attention as a key pathway for the develop...
In recent years, a promising role of plasmonic metal nanoparticles (NPs) has been demonstrated towar...
Published online: March 15, 2018Conventional development of nanomaterials for efficient electrocatal...
A family of dealloyed metal–oxide hybrid (M1M2@M1Ox) core@shell nanoparticle catalysts is demonstrat...
Developing exceedingly efficient, cost-effective, and environmentally friendly bifunctional catalyst...
The stability of electrocatalysts grown on substrates is a significant challenge for the constructio...
The stability of electrocatalysts grown on substrates is a significant challenge for the constructio...
Oxygen evaluation reaction (OER) is the most important reaction in hydrogen production from waterspl...