Organic semiconductors hold promise to enable scalable, low-cost and high-performance artificial photosynthesis. However, the performance of systems based on organic semiconductors for light-driven water oxidation have remained poor compared with inorganic semiconductors. Herein, we demonstrate an all-polymer bulk heterojunction organic semiconductor photoanode for solar water oxidation. By engineering the photoanode interlayers we gain important insights into critical factors (surface roughness and charge extraction efficiency) to increase the operational stability, which reaches above 3 h with a 1-Sun photocurrent density, J(ph), of >3 mA cm(-2) at 1.23 V versus the reversible hydrogen electrode for the sacrificial oxidation of Na2SO3 ...
The capture and conversion of solar energy into other useful forms has been the topic of discussion ...
A promising, yet challenging, route towards renewable production of hydrogen is the direct conversio...
Solar-driven water splitting into H-2 and O-2 using organic semiconductor (OS) photoelectrodes is a ...
Organic semiconductors (OSs) are emerging candidates as light-harvesting materials in photoelectroch...
Organic semiconductors (OSs) are emerging candidates as light-harvesting materials in photoelectroch...
As organic semiconductors attract increasing attention to application in the fields of bioelectronic...
The use of a bulk heterojunction of organic semiconductors to drive photoelectrochemical water split...
The direct conversion of solar energy into chemical fuels, such as hydrogen, via photoelectrochemi...
The direct conversion of solar energy into chemical fuels, such as hydrogen, via photoelectrochemi...
The direct conversion of solar energy into chemical fuels, such as hydrogen, via photoelectrochemica...
Photoelectrochemical cells employing organic semiconductors (OS) are promising for solar-to-fuel con...
We present high-performance and robust organic photoelectrochemical cells (OPECs) by employing a bul...
We report herein the fabrication of organic/inorganic hybrid photoanode for solar water oxidation by...
The demand for a clean, sustainable energy future has motivated the scientific community to research...
Solar water oxidation has been recognized as a promising technology to produce clean energy resource...
The capture and conversion of solar energy into other useful forms has been the topic of discussion ...
A promising, yet challenging, route towards renewable production of hydrogen is the direct conversio...
Solar-driven water splitting into H-2 and O-2 using organic semiconductor (OS) photoelectrodes is a ...
Organic semiconductors (OSs) are emerging candidates as light-harvesting materials in photoelectroch...
Organic semiconductors (OSs) are emerging candidates as light-harvesting materials in photoelectroch...
As organic semiconductors attract increasing attention to application in the fields of bioelectronic...
The use of a bulk heterojunction of organic semiconductors to drive photoelectrochemical water split...
The direct conversion of solar energy into chemical fuels, such as hydrogen, via photoelectrochemi...
The direct conversion of solar energy into chemical fuels, such as hydrogen, via photoelectrochemi...
The direct conversion of solar energy into chemical fuels, such as hydrogen, via photoelectrochemica...
Photoelectrochemical cells employing organic semiconductors (OS) are promising for solar-to-fuel con...
We present high-performance and robust organic photoelectrochemical cells (OPECs) by employing a bul...
We report herein the fabrication of organic/inorganic hybrid photoanode for solar water oxidation by...
The demand for a clean, sustainable energy future has motivated the scientific community to research...
Solar water oxidation has been recognized as a promising technology to produce clean energy resource...
The capture and conversion of solar energy into other useful forms has been the topic of discussion ...
A promising, yet challenging, route towards renewable production of hydrogen is the direct conversio...
Solar-driven water splitting into H-2 and O-2 using organic semiconductor (OS) photoelectrodes is a ...