A heat-treatment approach for Ba0.5Sr0.5Co0.8Fe0.2O3-?? (BSCF5582) is introduced as a way of enhancing the electrocatalytic performance of perovskite catalysts. The perovskite made by heat-treatment in oxygen atmosphere loses around 30 nm of spinel layer on the surface relative to the untreated version, and demonstrates enhanced oxygen reduction reaction and oxygen evolution reaction catalytic activities.close6
Perovskite oxides exhibit potential for use as electrocatalysts in the oxygen evolution reaction (OE...
Single and double perovskite oxides have been reported to be amongst the most active electrocatalyst...
Renewable energy conversion and storage as well as greenhouse gas emission-free technologies are wit...
Perovskite oxide ceramics attracts significant attention as a strong candidate of bifunctional oxyge...
Development of electrocatalysts for the oxygen evolution reaction (OER) plays a critical role in ele...
Development of electrocatalysts for the oxygen evolution reaction (OER) plays a critical role in ele...
The electrochemical reduction of molecular oxygen is a fundamental process in Solid Oxide Fuel Cells...
Among the perovskites used to catalyze the oxygen evolution reaction (OER), Ba0.5Sr0.5Co0.8Fe0.2O3-d...
Perovskite oxide, a low‐cost bifunctional oxygen evolution reaction (OER) and oxygen reduction react...
Doped perovskite oxides with the general formula of AA′ BB′ O have been extensively exploited as the...
We present a facile way to synthesize BSCF by using glycine-nitrate auto-combustion followed by anne...
The effect of B sites on the catalytic activities of oxygen evolution reaction (OER) for perovskite ...
Electrode materials with high activity and good stability are essential for commercialization of ene...
Solid Oxide Fuel Cells are high temperature, solid-state, electrochemical devices that can convert f...
We report a facile and universal strategy with simultaneous modulation of intrinsic activity and act...
Perovskite oxides exhibit potential for use as electrocatalysts in the oxygen evolution reaction (OE...
Single and double perovskite oxides have been reported to be amongst the most active electrocatalyst...
Renewable energy conversion and storage as well as greenhouse gas emission-free technologies are wit...
Perovskite oxide ceramics attracts significant attention as a strong candidate of bifunctional oxyge...
Development of electrocatalysts for the oxygen evolution reaction (OER) plays a critical role in ele...
Development of electrocatalysts for the oxygen evolution reaction (OER) plays a critical role in ele...
The electrochemical reduction of molecular oxygen is a fundamental process in Solid Oxide Fuel Cells...
Among the perovskites used to catalyze the oxygen evolution reaction (OER), Ba0.5Sr0.5Co0.8Fe0.2O3-d...
Perovskite oxide, a low‐cost bifunctional oxygen evolution reaction (OER) and oxygen reduction react...
Doped perovskite oxides with the general formula of AA′ BB′ O have been extensively exploited as the...
We present a facile way to synthesize BSCF by using glycine-nitrate auto-combustion followed by anne...
The effect of B sites on the catalytic activities of oxygen evolution reaction (OER) for perovskite ...
Electrode materials with high activity and good stability are essential for commercialization of ene...
Solid Oxide Fuel Cells are high temperature, solid-state, electrochemical devices that can convert f...
We report a facile and universal strategy with simultaneous modulation of intrinsic activity and act...
Perovskite oxides exhibit potential for use as electrocatalysts in the oxygen evolution reaction (OE...
Single and double perovskite oxides have been reported to be amongst the most active electrocatalyst...
Renewable energy conversion and storage as well as greenhouse gas emission-free technologies are wit...