Development of easy-to-make, highly active, and stable bifunctional electrocatalysts for water splitting is important for future renewable energy systems. Three-dimension (3D) porous Ni/Ni₈P₃ and Ni/Ni₉S₈ electrodes are prepared by sequential treatment of commercial Ni-foam with acid activation, followed by phosphorization or sulfurization. The resultant materials can act as self-supported bifunctional electrocatalytic electrodes for direct water splitting with excellent activity toward oxygen evolution reaction and hydrogen evolution reaction in alkaline media. Stable performance can be maintained for at least 24 h, illustrating their versatile and practical nature for clean energy generation. Furthermore, an advanced water electrolyzer th...
High-performance noble metal-free electrocatalysts are extremely desired for overall water splitting...
Economically producing hydrogen via electrocatalytic water splitting requires highly efficient and l...
The design and development of economical and highly efficient electrocatalysts for the hydrogen evol...
Water splitting is a sustainable approach for production of hydrogen to fuel some clean energy techn...
To search for the efficient non-noble metal based and/or earth-abundant electrocatalysts for overall...
Water electrolysis offers a promising approach toward future sustainable energy mix utilizing hydrog...
High‐performance water‐splitting electrocatalysts are needed by the energy sector for sustainable hy...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
The overall water splitting into hydrogen and oxygen is one of the most promising ways to store inte...
Transition-metal-based electrocatalysts containing chalcogenides (S and Se) or phosphorous have bee...
Rational design of non-noble metal electrocatalysts with high intrinsic activity for both the oxygen...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
High-performance noble metal-free electrocatalysts are extremely desired for overall water splitting...
Economically producing hydrogen via electrocatalytic water splitting requires highly efficient and l...
The design and development of economical and highly efficient electrocatalysts for the hydrogen evol...
Water splitting is a sustainable approach for production of hydrogen to fuel some clean energy techn...
To search for the efficient non-noble metal based and/or earth-abundant electrocatalysts for overall...
Water electrolysis offers a promising approach toward future sustainable energy mix utilizing hydrog...
High‐performance water‐splitting electrocatalysts are needed by the energy sector for sustainable hy...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
The overall water splitting into hydrogen and oxygen is one of the most promising ways to store inte...
Transition-metal-based electrocatalysts containing chalcogenides (S and Se) or phosphorous have bee...
Rational design of non-noble metal electrocatalysts with high intrinsic activity for both the oxygen...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
High-performance noble metal-free electrocatalysts are extremely desired for overall water splitting...
Economically producing hydrogen via electrocatalytic water splitting requires highly efficient and l...
The design and development of economical and highly efficient electrocatalysts for the hydrogen evol...