Large-scale growth of low-cost, efficient, and durable non-noble metal-based electrocatalysts for water splitting is crucial for future renewable energy systems. Atomic layer deposition (ALD) provides a promising route for depositing uniform thin coatings of electrocatalysts, which are useful in many technologies, including the splitting of water. In this communication, we report the growth of a NiO/Ni catalyst directly on carbon fiber paper by atomic layer deposition and report subsequent reduction and oxidation annealing treatments. The 10–20 nm NiO/Ni nanoparticle catalysts can reach a current density of 10 mA·cm−2 at an overpotential of 189 mV for hydrogen evolution reactions and 257 mV for oxygen evolution reactions with high stability...
Due to the increasing energy consumption, designing efficient electrocatalysts for electrochemical w...
The exploration of efficient and economical electrocatalysts towards the oxygen evolution reaction (...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Large-scale growth of low-cost, efficient, and durable non-noble metal-based electrocatalysts for wa...
Large-scale growth of low-cost, efficient, and durable non-noble metal-based electrocatalysts for wa...
WOS: 000467235500022PubMed ID: 30637965Portable and flexible energy devices demand lightweight and h...
Ni-based compounds have been widely used for catalytic water splitting in alkaline media. NiO-based ...
The most critical challenge in hydrogen fuel production is to develop efficient, eco-friendly, low-c...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
We present a facile way to fabricate phosphorus and aluminum codoped nickel oxide-based nanosheets b...
Electrochemical water-splitting provides an effective strategy to convert electrical energy into ren...
textAs demands for alternative sources of energy increase over the coming decades, water electrolysi...
Electrochemical water splitting into hydrogen and oxygen is a promising method for solar energy stor...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
We present a facile way to fabricate phosphorus and aluminum codoped nickel oxide-based nanosheets b...
Due to the increasing energy consumption, designing efficient electrocatalysts for electrochemical w...
The exploration of efficient and economical electrocatalysts towards the oxygen evolution reaction (...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Large-scale growth of low-cost, efficient, and durable non-noble metal-based electrocatalysts for wa...
Large-scale growth of low-cost, efficient, and durable non-noble metal-based electrocatalysts for wa...
WOS: 000467235500022PubMed ID: 30637965Portable and flexible energy devices demand lightweight and h...
Ni-based compounds have been widely used for catalytic water splitting in alkaline media. NiO-based ...
The most critical challenge in hydrogen fuel production is to develop efficient, eco-friendly, low-c...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
We present a facile way to fabricate phosphorus and aluminum codoped nickel oxide-based nanosheets b...
Electrochemical water-splitting provides an effective strategy to convert electrical energy into ren...
textAs demands for alternative sources of energy increase over the coming decades, water electrolysi...
Electrochemical water splitting into hydrogen and oxygen is a promising method for solar energy stor...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
We present a facile way to fabricate phosphorus and aluminum codoped nickel oxide-based nanosheets b...
Due to the increasing energy consumption, designing efficient electrocatalysts for electrochemical w...
The exploration of efficient and economical electrocatalysts towards the oxygen evolution reaction (...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...