Perovskites have been widely studied for electrocatalysis due to the exceptional activity they exhibit for surface-mediated redox reactions. To date, descriptors based on density functional theory calculations or experimental measurements have assumed a bulk-like configuration for the surfaces of these oxides. Herein, we probed an initial exposed surface and the screened subsurface of LaMnO3 particles, demonstrating that their augmented activity toward the oxygen reduction reaction (ORR) can be related to a spontaneous surface reconstruction. Our approach involves high energy resolution electron energy loss spectroscopy for the fine structure probing of oxygen and manganese ionization edges under electron beam conditions that leave the stru...
International audienceDefect engineering in catalytic materials is a versatile strategy to fine-tune...
Lanthanum based electrocatalytically active perovskites, LaMO3 (M=Cr, Mn, Fe, Co, Ni), were synthesi...
LaMnO3 is an inexpensive alternative to precious metals (e.g. platinum) as a catalyst for the oxygen...
LaMnO3 has been identified as one of the most active systems towards the 4‐electron oxygen reduction...
Perovskite oxide nanostructures are on the forefront of technology due to the wide spectrum of possi...
Catalytic activity of perovskites for oxygen reduction (ORR) was recently correlated with bulk d-ele...
Catalytic activity of perovskites for oxygen reduction (ORR) was recently correlated with bulk d-ele...
Catalytic activity of perovskites for oxygen reduction (ORR) was recently correlated with bulk d-ele...
In this work, we performed density functional theory (DFT) calculations with inclusion of Hubbard U ...
The chemical composition of a LaMnO3 perovskite was modified sequentially by an improved sol–gel met...
We present a Hubbard-corrected density functional theory (DFT+U) study of the adsorption and reducti...
In this paper, we perform a comparative study based on ab initio modeling for perovskite ABO[subscri...
The atomistic rationalization of the activity of transition metal oxides towards oxygen electrocatal...
LaMnO3 is an inexpensive alternative to precious metals (e.g. platinum) as a catalyst for the oxyge...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
International audienceDefect engineering in catalytic materials is a versatile strategy to fine-tune...
Lanthanum based electrocatalytically active perovskites, LaMO3 (M=Cr, Mn, Fe, Co, Ni), were synthesi...
LaMnO3 is an inexpensive alternative to precious metals (e.g. platinum) as a catalyst for the oxygen...
LaMnO3 has been identified as one of the most active systems towards the 4‐electron oxygen reduction...
Perovskite oxide nanostructures are on the forefront of technology due to the wide spectrum of possi...
Catalytic activity of perovskites for oxygen reduction (ORR) was recently correlated with bulk d-ele...
Catalytic activity of perovskites for oxygen reduction (ORR) was recently correlated with bulk d-ele...
Catalytic activity of perovskites for oxygen reduction (ORR) was recently correlated with bulk d-ele...
In this work, we performed density functional theory (DFT) calculations with inclusion of Hubbard U ...
The chemical composition of a LaMnO3 perovskite was modified sequentially by an improved sol–gel met...
We present a Hubbard-corrected density functional theory (DFT+U) study of the adsorption and reducti...
In this paper, we perform a comparative study based on ab initio modeling for perovskite ABO[subscri...
The atomistic rationalization of the activity of transition metal oxides towards oxygen electrocatal...
LaMnO3 is an inexpensive alternative to precious metals (e.g. platinum) as a catalyst for the oxyge...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
International audienceDefect engineering in catalytic materials is a versatile strategy to fine-tune...
Lanthanum based electrocatalytically active perovskites, LaMO3 (M=Cr, Mn, Fe, Co, Ni), were synthesi...
LaMnO3 is an inexpensive alternative to precious metals (e.g. platinum) as a catalyst for the oxygen...