Perovskite oxides recently have emerged as efficient electrocatalysts for the oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) in an alkaline solution. However, most perovskites have poor electrical conductivity at room temperature. Here, to simultaneously enhance the activity and stability towards both OER and HER, we in situ-introduce carbon nanotubes (CNTs) on the perovskite (SrTiFeNiO) surface via a simple chemical vapor deposition (CVD) method. First, we evaluate the influence of the CVD temperature on the growth of the CNTs. The optimized electrocatalyst obtained at a temperature of 700 °C (denoted as STFN/CNT-700) exhibits higher OER and HER activities than the bare perovskite, which is reflected by the current d...
AbstractThe water electrolysis for hydrogen production is constrained by the thermodynamically unfav...
The high cost and poor durability of noble metal electrocatalysts for bifunctional oxygen catalysis ...
The high cost and poor durability of noble metal electrocatalysts for bifunctional oxygen catalysis ...
© 2018 Elsevier Ltd Perovskite oxides recently have emerged as efficient electrocatalysts for the ox...
The development of highly efficient and low-cost electrocatalysts for oxygen evolution reaction (OER...
The development of highly efficient and low-cost electrocatalysts for oxygen evolution reaction (OER...
Due to the high cost of precious metal-based electrocatalysts for oxygen reduction and oxygen evolut...
Water splitting is a promising way to convert intermittent energy such as wind and solar to clean an...
As a consequence of the depletion of fossil fuels and an increasing population, the global energy cr...
Hydrogen is considered a promising clean energy vector with the features of high energy capacity and...
Perovskite oxides are demonstrated for the first time as efficient electrocatalysts for the hydrogen...
Water is the most abundant, renewable source of hydrogen on our planet. Appropriate catalytic materi...
The oxygen evolution reaction (OER) plays a crucial role in the application of water splitting, whic...
Perovskite oxides are demonstrated for the first time as efficient electrocatalysts for the hydrogen...
To accelerate the large-scale commercialization of electrochemical energy storage and conversion tec...
AbstractThe water electrolysis for hydrogen production is constrained by the thermodynamically unfav...
The high cost and poor durability of noble metal electrocatalysts for bifunctional oxygen catalysis ...
The high cost and poor durability of noble metal electrocatalysts for bifunctional oxygen catalysis ...
© 2018 Elsevier Ltd Perovskite oxides recently have emerged as efficient electrocatalysts for the ox...
The development of highly efficient and low-cost electrocatalysts for oxygen evolution reaction (OER...
The development of highly efficient and low-cost electrocatalysts for oxygen evolution reaction (OER...
Due to the high cost of precious metal-based electrocatalysts for oxygen reduction and oxygen evolut...
Water splitting is a promising way to convert intermittent energy such as wind and solar to clean an...
As a consequence of the depletion of fossil fuels and an increasing population, the global energy cr...
Hydrogen is considered a promising clean energy vector with the features of high energy capacity and...
Perovskite oxides are demonstrated for the first time as efficient electrocatalysts for the hydrogen...
Water is the most abundant, renewable source of hydrogen on our planet. Appropriate catalytic materi...
The oxygen evolution reaction (OER) plays a crucial role in the application of water splitting, whic...
Perovskite oxides are demonstrated for the first time as efficient electrocatalysts for the hydrogen...
To accelerate the large-scale commercialization of electrochemical energy storage and conversion tec...
AbstractThe water electrolysis for hydrogen production is constrained by the thermodynamically unfav...
The high cost and poor durability of noble metal electrocatalysts for bifunctional oxygen catalysis ...
The high cost and poor durability of noble metal electrocatalysts for bifunctional oxygen catalysis ...