Solar-driven hydrogen peroxide (H2O2) production presents unique merits of sustainability and environmental friendliness. Herein, efficient solar-driven H2O2 production through dioxygen reduction is achieved by employing polymeric carbon nitride framework with sodium cyanaminate moiety, affording a H2O2 production rate of 18.7 mu mol h (-1) mg(-1) and an apparent quantum yield of 27.6% at 380nm. The overall photocatalytic transformation process is systematically analyzed, and some previously unknown structural features and interactions are substantiated via experimental and theoretical methods. The structural features of cyanamino group and pyridinic nitrogen-coordinated soidum in the framework promote photon absorption, alter the energy la...
Photocatalysis is one of the environmental-friendly approaches toward the sustainable production of ...
Solar water-splitting represents an important strategy toward production of the storable and renewab...
Photocatalytic H2O2 production in pure water is prerequisite for diverse on-site applications, but c...
Solar-driven H2O2 production presents a renewable approach to chemical synthesis. Here, authors perf...
We report that in situ incorporation of both potassium and phosphate species into a polymeric carbon...
We describe the exploitation of the selective catalytic property of anthraquinone (AQ) for solar pho...
The synthesis of hydrogen peroxide (H2O2) from H2O and O2 by metal-free photocatalysts (e.g., graphi...
K and Na have been widely used in photocatalytic H2O2 production. However, Rb and Cs have rarely bee...
Graphite carbon nitride (g-C3N5) has been widely used in various photocatalytic reactions due to its...
Photocatalytic production of H2O2 from water and oxygen utilizing polymetric carbon nitride (PCN) is...
Solar-to-chemical energy conversion is a challenging subject for renewable energy storage. In the pa...
Photocatalytic hydrogen peroxide (H2O2) production will become a burgeoning strategy for solar energ...
The photocatalytic splitting of water into molecular hydrogen and molecular oxygen with sunlight is ...
Artificial photosynthesis utilises solar-light for clean fuel H2 production and is emerging as a pot...
peer-reviewedHydrogen peroxide (H2O2) is one of the most important industrial oxidants. In principle...
Photocatalysis is one of the environmental-friendly approaches toward the sustainable production of ...
Solar water-splitting represents an important strategy toward production of the storable and renewab...
Photocatalytic H2O2 production in pure water is prerequisite for diverse on-site applications, but c...
Solar-driven H2O2 production presents a renewable approach to chemical synthesis. Here, authors perf...
We report that in situ incorporation of both potassium and phosphate species into a polymeric carbon...
We describe the exploitation of the selective catalytic property of anthraquinone (AQ) for solar pho...
The synthesis of hydrogen peroxide (H2O2) from H2O and O2 by metal-free photocatalysts (e.g., graphi...
K and Na have been widely used in photocatalytic H2O2 production. However, Rb and Cs have rarely bee...
Graphite carbon nitride (g-C3N5) has been widely used in various photocatalytic reactions due to its...
Photocatalytic production of H2O2 from water and oxygen utilizing polymetric carbon nitride (PCN) is...
Solar-to-chemical energy conversion is a challenging subject for renewable energy storage. In the pa...
Photocatalytic hydrogen peroxide (H2O2) production will become a burgeoning strategy for solar energ...
The photocatalytic splitting of water into molecular hydrogen and molecular oxygen with sunlight is ...
Artificial photosynthesis utilises solar-light for clean fuel H2 production and is emerging as a pot...
peer-reviewedHydrogen peroxide (H2O2) is one of the most important industrial oxidants. In principle...
Photocatalysis is one of the environmental-friendly approaches toward the sustainable production of ...
Solar water-splitting represents an important strategy toward production of the storable and renewab...
Photocatalytic H2O2 production in pure water is prerequisite for diverse on-site applications, but c...