The nucleophile oxidation reaction (NOR) is of enormous significance for organic electrosynthesis and coupling for hydrogen generation. However, the nonuniform NOR mechanism limits its development. For the NOR, involving electrocatalysis and organic chemistry, both the electrochemical step and non-electrochemical process should be taken into account. The NOR of nickel-based hydroxides includes the electrogenerated dehydrogenation of the Ni2+–OH bond and a spontaneous non-electrochemical process; the former determines the electrochemical activity, and the nucleophile oxidation pathway depends on the latter. Herein, the space-confinement-induced synthesis of Ni3Fe layered double hydroxide intercalated with single-atom-layer Pt nanosheets (Ni3...
The design of electrocatalysts for the oxidation and production of H<sub>2</sub> is important for th...
Cost-effective electrocatalysts based on nonprecious metals for efficient water splitting are crucia...
Water splitting is an environmentally friendly strategy to produce hydrogen but is limited by the ox...
Understanding how electrocatalysts function in a nucleophile oxidation reaction (NOR) on anode, repl...
NiOOH is considered as the most active intermediate during electrochemical oxidation reaction, howev...
Single-atom catalysts (SACs) have enormous significance in heterogeneous catalysis. However, underst...
Highly active, durable, and cost-effective electrocatalysts for water oxidation to evolve oxygen gas...
The development of robust and cost-effective electrocatalysts for the oxygen evolution reaction (OER...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
A fundamental understanding of the origin of oxygen evolution reaction (OER) activity of transition-...
The development of a new type of oxygen evolution reaction (OER) catalyst to reduce the energy loss ...
Active and stable electrocatalysts are the key to water electrolysis for hydrogen production. This p...
Powering the planet with sustainable, carbon-neutral fuels affects every aspect of human life. Sunli...
Due to their importance for practical applications in energy conversion, resolving the kinetic issue...
The oxygen evolution reaction (OER) is involved in various renewable energy systems, such as water‐s...
The design of electrocatalysts for the oxidation and production of H<sub>2</sub> is important for th...
Cost-effective electrocatalysts based on nonprecious metals for efficient water splitting are crucia...
Water splitting is an environmentally friendly strategy to produce hydrogen but is limited by the ox...
Understanding how electrocatalysts function in a nucleophile oxidation reaction (NOR) on anode, repl...
NiOOH is considered as the most active intermediate during electrochemical oxidation reaction, howev...
Single-atom catalysts (SACs) have enormous significance in heterogeneous catalysis. However, underst...
Highly active, durable, and cost-effective electrocatalysts for water oxidation to evolve oxygen gas...
The development of robust and cost-effective electrocatalysts for the oxygen evolution reaction (OER...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
A fundamental understanding of the origin of oxygen evolution reaction (OER) activity of transition-...
The development of a new type of oxygen evolution reaction (OER) catalyst to reduce the energy loss ...
Active and stable electrocatalysts are the key to water electrolysis for hydrogen production. This p...
Powering the planet with sustainable, carbon-neutral fuels affects every aspect of human life. Sunli...
Due to their importance for practical applications in energy conversion, resolving the kinetic issue...
The oxygen evolution reaction (OER) is involved in various renewable energy systems, such as water‐s...
The design of electrocatalysts for the oxidation and production of H<sub>2</sub> is important for th...
Cost-effective electrocatalysts based on nonprecious metals for efficient water splitting are crucia...
Water splitting is an environmentally friendly strategy to produce hydrogen but is limited by the ox...