Hematite is one of the candidates for solar water oxidation owing to its proper band gap for water oxidation, abundance and easy synthesis. For their practical applications, however, there still remain many problems to be addressed such as a low photocurrent/stability under neutral pH condition and high onset potential for catalytic water splitting. To solve these critical issues, we developed a novel surface modification method to improve photocatalytic efficiency of hematite using layer-by-layer assembly (LbL) of cationic polyelectrolytes and anionic polyoxometalates (POMs) water oxidation catalysts. We found that the surface modification of hematite with polyelectrolytes (which is electrically and electrochemically inactive) and POMs led...
State-of-the-art water-oxidation catalysts (WOCs) in acidic electrolytes usually contain expensive n...
State‐of‐the‐art water‐oxidation catalysts (WOCs) in acidic electrolytes usually contain expensive n...
Hematite (alpha-Fe2O3) has emerged as a promising material for photoelectrochemical (PEC) water spli...
Hematite is one of promising materials for visible light driven photoelectrochemical water splitting...
Artificial photosynthesis has drawn great attention for decades as a promising solution to modern en...
Solar to chemical conversion is considered as a promising solution to energy and environmental probl...
Artificial photosynthesis has drawn great attention for decades as a promising solution to energy an...
Artificial photosynthesis has drawn great attention for decades as a promising solution to energy an...
An efficient water oxidation photoanode based on hematite has been designed and fabricated by tailor...
Hematite (a-Fe2O3) is a very promising photoanode material for solar water oxidation due to its abun...
Artificial photosynthesis is considered one of the most promising solutions to modern energy and env...
Artificial photosynthesis has a great attention as a promising energy solution to environmental prob...
Solar water splitting is a promising method for producing renewable fuels. Thermodynamically, the ov...
Solar water splitting is a promising method for producing renewable fuels. Thermodynamically, the ov...
Solar to chemical conversion, the so-called artificial photosynthesis has drawn great attention for ...
State-of-the-art water-oxidation catalysts (WOCs) in acidic electrolytes usually contain expensive n...
State‐of‐the‐art water‐oxidation catalysts (WOCs) in acidic electrolytes usually contain expensive n...
Hematite (alpha-Fe2O3) has emerged as a promising material for photoelectrochemical (PEC) water spli...
Hematite is one of promising materials for visible light driven photoelectrochemical water splitting...
Artificial photosynthesis has drawn great attention for decades as a promising solution to modern en...
Solar to chemical conversion is considered as a promising solution to energy and environmental probl...
Artificial photosynthesis has drawn great attention for decades as a promising solution to energy an...
Artificial photosynthesis has drawn great attention for decades as a promising solution to energy an...
An efficient water oxidation photoanode based on hematite has been designed and fabricated by tailor...
Hematite (a-Fe2O3) is a very promising photoanode material for solar water oxidation due to its abun...
Artificial photosynthesis is considered one of the most promising solutions to modern energy and env...
Artificial photosynthesis has a great attention as a promising energy solution to environmental prob...
Solar water splitting is a promising method for producing renewable fuels. Thermodynamically, the ov...
Solar water splitting is a promising method for producing renewable fuels. Thermodynamically, the ov...
Solar to chemical conversion, the so-called artificial photosynthesis has drawn great attention for ...
State-of-the-art water-oxidation catalysts (WOCs) in acidic electrolytes usually contain expensive n...
State‐of‐the‐art water‐oxidation catalysts (WOCs) in acidic electrolytes usually contain expensive n...
Hematite (alpha-Fe2O3) has emerged as a promising material for photoelectrochemical (PEC) water spli...