We leverage first-principles density functional theory (DFT) calculations to understand the electrocatalytic processes in Mg–CO2 batteries, considering ruthenium oxide (RuO2) as an archetypical cathode catalyst. Our goal is to establish a mechanistic framework for understanding the charging and discharging reaction pathways and their influence on overpotentials. On the RuO2 (211) surface, we found reaction initiation through thermodynamically favorable adsorption of Mg followed by interactions with CO2. However, we found that the formation of carbonate (CO32–) and oxalate (C2O42–) intermediates via the activation of CO2 at the catalytic site is thermodynamically unfavorable. We predict that MgC2O4 will form as the discharge product due to i...
The main target of this thesis is to use density functional theory-based simulations to study electr...
Multivalent (MV) battery architectures based on pairing a Mg metal anode with a high-voltage (∼3 V) ...
Solar fuel production through the so-called artificial photosynthesis has attracted a great deal of ...
We leverage first-principles density functional theory (DFT) calculations to understand the electroc...
The development of Mg batteries, which can potentially achieve higher energy densities than Li-ion s...
Because of the involvement of solid-state discharge product Li<sub>2</sub>O<sub>2</sub>, how a catal...
In this study, the projected density of states (PDOS) of the stable normal-spinel structure and stab...
Publisher's version (útgefin grein)The electrochemical CO2reduction reaction (CO2RR) on RuO2and RuO2...
The interfacial interaction between catalysts and substrates has been considered as a pivotal factor...
Rutile transition metals have lately been reported to exhibit outstanding catalytic activity. Wherea...
RuO<sub>2</sub>-based electrocatalysts are found to be active at low overpotential toward direct ele...
RuO<sub>2</sub> has been reported to reduce CO<sub>2</sub> electrochemically to methanol at low over...
The aqueous Mg–air battery is an attractive candidate for some electric vehicle applications due to ...
Multivalent (MV) battery architectures based on pairing a Mg metal anode with a high-voltage (∼3 V) ...
Solar fuel production through the so-called artificial photosynthesis has attracted a great deal of ...
The main target of this thesis is to use density functional theory-based simulations to study electr...
Multivalent (MV) battery architectures based on pairing a Mg metal anode with a high-voltage (∼3 V) ...
Solar fuel production through the so-called artificial photosynthesis has attracted a great deal of ...
We leverage first-principles density functional theory (DFT) calculations to understand the electroc...
The development of Mg batteries, which can potentially achieve higher energy densities than Li-ion s...
Because of the involvement of solid-state discharge product Li<sub>2</sub>O<sub>2</sub>, how a catal...
In this study, the projected density of states (PDOS) of the stable normal-spinel structure and stab...
Publisher's version (útgefin grein)The electrochemical CO2reduction reaction (CO2RR) on RuO2and RuO2...
The interfacial interaction between catalysts and substrates has been considered as a pivotal factor...
Rutile transition metals have lately been reported to exhibit outstanding catalytic activity. Wherea...
RuO<sub>2</sub>-based electrocatalysts are found to be active at low overpotential toward direct ele...
RuO<sub>2</sub> has been reported to reduce CO<sub>2</sub> electrochemically to methanol at low over...
The aqueous Mg–air battery is an attractive candidate for some electric vehicle applications due to ...
Multivalent (MV) battery architectures based on pairing a Mg metal anode with a high-voltage (∼3 V) ...
Solar fuel production through the so-called artificial photosynthesis has attracted a great deal of ...
The main target of this thesis is to use density functional theory-based simulations to study electr...
Multivalent (MV) battery architectures based on pairing a Mg metal anode with a high-voltage (∼3 V) ...
Solar fuel production through the so-called artificial photosynthesis has attracted a great deal of ...