On most electrocatalysts H2O2 is an intermediate in the electroreduction ofoxygen. H2O2 can decompose either chemically or electrochemically and inassessing the performance of the electrocatalyst it is crucial to distinguish betweenthese reaction paths. A simple method is proposed to determine whetheror not the chemical path is followed
Abstract Shifting electrochemical oxygen reduction reaction (ORR) via two‐electron pathway becomes i...
Electrochemical reduction of oxygen is considered as a new strategy to achieve decentralized prepara...
The four electron reduction of oxygen to water, without the intermediate formation of hydrogen perox...
On most electrocatalysts H2O2 is an intermediate in the electroreduction ofoxygen. H2O2 can decompos...
Hydrogen peroxide is a chemical with growing industrial relevance but is plagued with high productio...
This thesis focuses on the electrochemical production of H₂O₂ via water oxidation and its subsequent...
The portable electrochemical generation of hydrogen peroxide from air and water would enable greater...
This study reports the performance of a flow-through reactor to promote the sustainable production o...
Hydrogen peroxide is a key component in Advanced Oxidation Processes (AOP). Its decomposition at dif...
This paper presents a proposal to use an electrochemical flow-by reactor for hydrogen peroxide elect...
The electrosynthesis of H2O2 via a two-electron pathway oxygen reduction reaction (2e??? ORR) has em...
Electrochemical production of hydrogen peroxide (H2O2) has recently gained traction as a green alter...
Hydrogen peroxide (H2O2) is a valuable chemical for a wide variety of applications. The environmenta...
Molecular oxygen and hydrogen peroxide reduction by 1,2-diferrocenylethane (DFcE) was investigated a...
Hydrogen peroxide is made commercially by the cyclic reduction and oxidation of solutions containing...
Abstract Shifting electrochemical oxygen reduction reaction (ORR) via two‐electron pathway becomes i...
Electrochemical reduction of oxygen is considered as a new strategy to achieve decentralized prepara...
The four electron reduction of oxygen to water, without the intermediate formation of hydrogen perox...
On most electrocatalysts H2O2 is an intermediate in the electroreduction ofoxygen. H2O2 can decompos...
Hydrogen peroxide is a chemical with growing industrial relevance but is plagued with high productio...
This thesis focuses on the electrochemical production of H₂O₂ via water oxidation and its subsequent...
The portable electrochemical generation of hydrogen peroxide from air and water would enable greater...
This study reports the performance of a flow-through reactor to promote the sustainable production o...
Hydrogen peroxide is a key component in Advanced Oxidation Processes (AOP). Its decomposition at dif...
This paper presents a proposal to use an electrochemical flow-by reactor for hydrogen peroxide elect...
The electrosynthesis of H2O2 via a two-electron pathway oxygen reduction reaction (2e??? ORR) has em...
Electrochemical production of hydrogen peroxide (H2O2) has recently gained traction as a green alter...
Hydrogen peroxide (H2O2) is a valuable chemical for a wide variety of applications. The environmenta...
Molecular oxygen and hydrogen peroxide reduction by 1,2-diferrocenylethane (DFcE) was investigated a...
Hydrogen peroxide is made commercially by the cyclic reduction and oxidation of solutions containing...
Abstract Shifting electrochemical oxygen reduction reaction (ORR) via two‐electron pathway becomes i...
Electrochemical reduction of oxygen is considered as a new strategy to achieve decentralized prepara...
The four electron reduction of oxygen to water, without the intermediate formation of hydrogen perox...