Considering their superior charge-transfer characteristics, easy tenability of energy levels, and low production cost, organic semiconductors are ideal for photoelectrochemical (PEC) hydrogen production. However, organic-semiconductor-based photoelectrodes have not been extensively explored for PEC water-splitting because of their low stability in water. Herein, we report high-performance and stable organic-semiconductors photoanodes consisting of p-type polymers and n-type non-fullerene materials, which is passivated using nickel foils, GaIn eutectic, and layered double hydroxides as model materials. We achieve a photocurrent density of 15.1 mA cm???2 at 1.23 V vs. reversible hydrogen electrode (RHE) with an onset potential of 0.55 V vs. R...
An important approach for solving the world's sustainable energy challenges is the conversion of sol...
An important approach for solving the world's sustainable energy challenges is the conversion of sol...
Photoelectrochemical (PEC) water splitting is a promising technology for the production of clean hyd...
Photoelectrochemical cells employing organic semiconductors (OS) are promising for solar-to-fuel con...
Solution processable organic semiconductors are well-established as high-performance materials for i...
A promising, yet challenging, route towards renewable production of hydrogen is the direct conversio...
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...
Photoelectrochemcial (PEC) water splitting is increasingly attracting attention as a means to genera...
The direct conversion of solar energy into chemical fuels, such as hydrogen, via photoelectrochemica...
The conversion of solar energy into chemical energy using renewable feedstocks such as water continu...
It is widely accepted within the community that to achieve a sustainable society with an energy mix ...
Photoelectrochemical (PEC) water splitting is a promising route for solar energy conversion to hydro...
AbstractHydrogen production using water splitting, based on a photoelectrochemical (PEC) process, ha...
Photoelectorchemical (PEC) water splitting is an attractive approach for producing sustainable and e...
An important approach for solving the world's sustainable energy challenges is the conversion of sol...
An important approach for solving the world's sustainable energy challenges is the conversion of sol...
Photoelectrochemical (PEC) water splitting is a promising technology for the production of clean hyd...
Photoelectrochemical cells employing organic semiconductors (OS) are promising for solar-to-fuel con...
Solution processable organic semiconductors are well-established as high-performance materials for i...
A promising, yet challenging, route towards renewable production of hydrogen is the direct conversio...
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...
Photoelectrochemcial (PEC) water splitting is increasingly attracting attention as a means to genera...
The direct conversion of solar energy into chemical fuels, such as hydrogen, via photoelectrochemica...
The conversion of solar energy into chemical energy using renewable feedstocks such as water continu...
It is widely accepted within the community that to achieve a sustainable society with an energy mix ...
Photoelectrochemical (PEC) water splitting is a promising route for solar energy conversion to hydro...
AbstractHydrogen production using water splitting, based on a photoelectrochemical (PEC) process, ha...
Photoelectorchemical (PEC) water splitting is an attractive approach for producing sustainable and e...
An important approach for solving the world's sustainable energy challenges is the conversion of sol...
An important approach for solving the world's sustainable energy challenges is the conversion of sol...
Photoelectrochemical (PEC) water splitting is a promising technology for the production of clean hyd...