Oxygen reduction reaction through the two-electron pathway holds promise for on-site hydrogen peroxide production; however, achieving high activity without compromising selectivity remains a long-standing challenge in catalyst design. Herein, we overcome this challenge by engineering a solid-liquid-gas three-phase interface that creates a hydrophobic microenvironment to enhance interfacial mass and electron transfer while retaining active sites. The engineered vertical graphene electrode exhibits greater than 97% Faradaic efficiency in alkaline media and greater than 90% Faradaic efficiency in neutral media, both at a large potential window (0.7–1.0 V). Continuous hydrogen peroxide production at 1,200 mg L−1 h−1 is achieved in a flow cell w...
Hydrogen peroxide (H2O2) is an essential chemical that is widely used in chemical synthesis, pulp an...
Selective hydrogen peroxide (H2O2) electrogeneration by oxygen reduction reaction (ORR) is an effici...
Abstract Selective electrochemical oxygen reduction (ORR) toward a two‐electron (2e−) pathway is an ...
Practical-scale on-site production of hydrogen peroxide (H2O2) via two-electron (2e(-)) oxygen reduc...
peer-reviewedFace to face: Flakes of reduced graphene oxide, synthesized in situ at the liquid/liqui...
Electrochemical oxygen reduction has garnered attention as an emerging alternative to the traditiona...
3D-graphene foam electrodes (Gii-Sens) immersed in a phosphate buffer solution of pH 7 are shown to ...
3D-graphene foam electrodes (Gii-Sens) immersed in a phosphate buffer solution of pH 7 are shown to ...
The electrocatalytic two-electron oxygen reduction reaction is an effective, safe and green approach...
Regulating the rational wettability on gas-diffusion electrodes (GDEs) plays a pivotal role to impro...
We report metal-free electrocatalysts to enhance utilization of dissolved and gaseous oxygen during ...
Water electrolysis powered by renewable electricity will likely be critical to a future hydrogen eco...
Hydrogen peroxide (H2O2) is a versatile oxidant, but its production heavily depends on the energy-in...
Regulating the rational wettability on gas-diffusion electrodes (GDEs) plays a pivotal role to impro...
Selective hydrogen peroxide (H2O2) electrogeneration by oxygen reduction reaction (ORR) is an effici...
Hydrogen peroxide (H2O2) is an essential chemical that is widely used in chemical synthesis, pulp an...
Selective hydrogen peroxide (H2O2) electrogeneration by oxygen reduction reaction (ORR) is an effici...
Abstract Selective electrochemical oxygen reduction (ORR) toward a two‐electron (2e−) pathway is an ...
Practical-scale on-site production of hydrogen peroxide (H2O2) via two-electron (2e(-)) oxygen reduc...
peer-reviewedFace to face: Flakes of reduced graphene oxide, synthesized in situ at the liquid/liqui...
Electrochemical oxygen reduction has garnered attention as an emerging alternative to the traditiona...
3D-graphene foam electrodes (Gii-Sens) immersed in a phosphate buffer solution of pH 7 are shown to ...
3D-graphene foam electrodes (Gii-Sens) immersed in a phosphate buffer solution of pH 7 are shown to ...
The electrocatalytic two-electron oxygen reduction reaction is an effective, safe and green approach...
Regulating the rational wettability on gas-diffusion electrodes (GDEs) plays a pivotal role to impro...
We report metal-free electrocatalysts to enhance utilization of dissolved and gaseous oxygen during ...
Water electrolysis powered by renewable electricity will likely be critical to a future hydrogen eco...
Hydrogen peroxide (H2O2) is a versatile oxidant, but its production heavily depends on the energy-in...
Regulating the rational wettability on gas-diffusion electrodes (GDEs) plays a pivotal role to impro...
Selective hydrogen peroxide (H2O2) electrogeneration by oxygen reduction reaction (ORR) is an effici...
Hydrogen peroxide (H2O2) is an essential chemical that is widely used in chemical synthesis, pulp an...
Selective hydrogen peroxide (H2O2) electrogeneration by oxygen reduction reaction (ORR) is an effici...
Abstract Selective electrochemical oxygen reduction (ORR) toward a two‐electron (2e−) pathway is an ...