Rational optimization of the OER activity of catalysts based on LaNiO3 oxide is achieved by maximizing the presence of trivalent Ni in the surface structure. DFT investigations of the LaNiO3 catalyst and surface structures related to it predict an improvement in the OER activity for these materials to levels comparable with the top of the OER volcano if the La content is minimized while the oxidation state of Ni is maintained. These theoretically predicted structures of high intrinsic OER activity can be prepared by a templated spray-freeze freeze-drying synthesis followed by a simple postsynthesis exfoliation-like treatment in acidic media. These nanocrystalline LaNiO3-related materials confirm the theoretical predictions, showing a dramat...
As the world’s power demand swells even bigger every year, the already worrying CO2 emissions expand...
Lanthanum based electrocatalytically active perovskites, LaMO3 (M=Cr, Mn, Fe, Co, Ni), were synthesi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018."F...
Rational optimization of the OER activity of catalysts based on LaNiO3 oxide is achieved by maximizi...
Aliovalent doping has been widely adopted to tune the electronic structure of transition-metal oxide...
Rare-earth metal oxides with perovskite-type crystal structures are under consideration for use as a...
We present a series of perovskite electrocatalysts that are highly active for both the oxygen evolut...
Aliovalent doping is widely adopted to tune the electronic structure of transition-metal oxides for ...
Rationally designing active and durable catalysts for the oxygen evolution reaction (OER) is of prim...
The oxygen evolution reaction (OER) is a key reaction for water electrolysis cells and air-powered b...
We present a series of perovskite electrocatalysts that are highly active for both the oxygen evolut...
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...
LaNiO perovskite is a promising electrocatalyst for the oxygen reduction reaction (ORR). In this wor...
Pursuing efficient and low-cost catalysts for the sluggish oxygen evolution reaction (OER) is impera...
As the world’s power demand swells even bigger every year, the already worrying CO2 emissions expand...
Lanthanum based electrocatalytically active perovskites, LaMO3 (M=Cr, Mn, Fe, Co, Ni), were synthesi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018."F...
Rational optimization of the OER activity of catalysts based on LaNiO3 oxide is achieved by maximizi...
Aliovalent doping has been widely adopted to tune the electronic structure of transition-metal oxide...
Rare-earth metal oxides with perovskite-type crystal structures are under consideration for use as a...
We present a series of perovskite electrocatalysts that are highly active for both the oxygen evolut...
Aliovalent doping is widely adopted to tune the electronic structure of transition-metal oxides for ...
Rationally designing active and durable catalysts for the oxygen evolution reaction (OER) is of prim...
The oxygen evolution reaction (OER) is a key reaction for water electrolysis cells and air-powered b...
We present a series of perovskite electrocatalysts that are highly active for both the oxygen evolut...
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...
LaNiO perovskite is a promising electrocatalyst for the oxygen reduction reaction (ORR). In this wor...
Pursuing efficient and low-cost catalysts for the sluggish oxygen evolution reaction (OER) is impera...
As the world’s power demand swells even bigger every year, the already worrying CO2 emissions expand...
Lanthanum based electrocatalytically active perovskites, LaMO3 (M=Cr, Mn, Fe, Co, Ni), were synthesi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018."F...