The search for efficient overall water-splitting electrocatalysts plays an important role for low-cost hydrogen production. Metal phosphides are promising for integrating hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) properties in one bifunctional electrode, but several challenges still exist and need to be solved. We report a free-standing carbon cloth electrode consisting of iron (Fe)-doped Ni5P4 nanosheet arrays via a hydrothermal reaction and subsequent phosphorization, which effectively drives both HER and OER in the base. The as-prepared Fe-doped Ni5P4 with ultralow Fe conent (2.5 atom %) delivers a current density of 10 mA cm–2 at 131 mV for HER and needs 257 mV to reach a current density of 100 mA cm–2 for OE...
The design of cheap and efficient water splitting systems for sustainable hydrogen production has at...
To search for the efficient non-noble metal based and/or earth-abundant electrocatalysts for overall...
In situ engineering highly active and ultrastable bi-functional electrocatalysts based on metal ions...
The search for efficient overall water-splitting electrocatalysts plays an important role for low-co...
Searching for cost-efficient electrocatalysts with high catalytic activity and stability for hydroge...
© 2019 The development of low-cost and earth-abundant materials for efficient oxygen and hydrogen ev...
Exploration of proficient electrocatalyst from earth-abundant nonprecious metals in lieu of noble me...
Low-cost and efficient catalytic electrode toward both hydrogen evolution reaction (HER) and oxygen ...
In large-scale, hydrogen production from water-splitting represents the most promising solution for ...
Nanostructured trimetallic phosphide electrocatalysts are promising for H2 and O2 evolution reaction...
Nanostructured trimetallic phosphide electrocatalysts are promising for H2 and O2 evolution reaction...
The investigation of nickel phosphide (Ni5P4) as a catalyst for the hydrogen (HER) and oxygen evolut...
In large-scale, hydrogen production from water-splitting represents the most promising solution for ...
Nanostructured trimetallic phosphide electrocatalysts are promising for H2 and O2 evolution reaction...
The development of efficient, durable, and inexpensive hydrogen evolution electrodes remains a key c...
The design of cheap and efficient water splitting systems for sustainable hydrogen production has at...
To search for the efficient non-noble metal based and/or earth-abundant electrocatalysts for overall...
In situ engineering highly active and ultrastable bi-functional electrocatalysts based on metal ions...
The search for efficient overall water-splitting electrocatalysts plays an important role for low-co...
Searching for cost-efficient electrocatalysts with high catalytic activity and stability for hydroge...
© 2019 The development of low-cost and earth-abundant materials for efficient oxygen and hydrogen ev...
Exploration of proficient electrocatalyst from earth-abundant nonprecious metals in lieu of noble me...
Low-cost and efficient catalytic electrode toward both hydrogen evolution reaction (HER) and oxygen ...
In large-scale, hydrogen production from water-splitting represents the most promising solution for ...
Nanostructured trimetallic phosphide electrocatalysts are promising for H2 and O2 evolution reaction...
Nanostructured trimetallic phosphide electrocatalysts are promising for H2 and O2 evolution reaction...
The investigation of nickel phosphide (Ni5P4) as a catalyst for the hydrogen (HER) and oxygen evolut...
In large-scale, hydrogen production from water-splitting represents the most promising solution for ...
Nanostructured trimetallic phosphide electrocatalysts are promising for H2 and O2 evolution reaction...
The development of efficient, durable, and inexpensive hydrogen evolution electrodes remains a key c...
The design of cheap and efficient water splitting systems for sustainable hydrogen production has at...
To search for the efficient non-noble metal based and/or earth-abundant electrocatalysts for overall...
In situ engineering highly active and ultrastable bi-functional electrocatalysts based on metal ions...