Understanding the fundamental thermodynamic limits of photo-electrochemical (PEC) water splitting is of great scientific and practical importance. In this work, a ‘detailed balance’ type model of solar quantum energy converters and non-linear circuit analysis is used to calculate the thermodynamic limiting efficiency of various configurations of PEC design. This model is released as freely accessible open-source (GNU GPL v3) code written in MATLAB with a graphical user interface (GUI). The capabilities of the model are demonstrated by simulating selected permutations of PEC design and results are validated against previous literature. This tool will enable solar fuel researchers to easily compare experimental results to theoretical limits t...
Models of solar fuels devices that are completely electrochemically-mediated and consist of ensemble...
Theoretical limiting efficiencies have a critical role in determining technological viability and ex...
World energy consumption is rising fast due to the increasing world urbanization and industrializati...
A future sustainable society will need low-carbon emissions supplies of hydrogen for which photoelec...
A validated multi-physics numerical model that accounts for charge and species conservation, fluid f...
A validated multi-physics numerical model that accounts for charge and species conservation, fluid f...
A validated multi-physics numerical model that accounts for charge and species conservation, fluid f...
Solar-powered water splitting with photoelectrochemical (PEC) devices is a promising method to simul...
AbstractAn externally biased overpotential is normally required for photoelectrochemically cleaving ...
Device and system design choices for solar energy conversion and storage approaches require holistic...
The current state of the art in direct water splitting in photo-electrochemical cells (PECs) is pres...
The efficiency of an operating photoelectrochemical solar-fuels-generator system is determined by th...
Concurrent solar generation of hydrogen and CO through photoelectrochemical (PEC) water and CO2 elec...
Theoretical limiting efficiencies have a critical role in determining technological viability and ex...
Models of solar fuels devices that are completely electrochemically-mediated and consist of ensemble...
Models of solar fuels devices that are completely electrochemically-mediated and consist of ensemble...
Theoretical limiting efficiencies have a critical role in determining technological viability and ex...
World energy consumption is rising fast due to the increasing world urbanization and industrializati...
A future sustainable society will need low-carbon emissions supplies of hydrogen for which photoelec...
A validated multi-physics numerical model that accounts for charge and species conservation, fluid f...
A validated multi-physics numerical model that accounts for charge and species conservation, fluid f...
A validated multi-physics numerical model that accounts for charge and species conservation, fluid f...
Solar-powered water splitting with photoelectrochemical (PEC) devices is a promising method to simul...
AbstractAn externally biased overpotential is normally required for photoelectrochemically cleaving ...
Device and system design choices for solar energy conversion and storage approaches require holistic...
The current state of the art in direct water splitting in photo-electrochemical cells (PECs) is pres...
The efficiency of an operating photoelectrochemical solar-fuels-generator system is determined by th...
Concurrent solar generation of hydrogen and CO through photoelectrochemical (PEC) water and CO2 elec...
Theoretical limiting efficiencies have a critical role in determining technological viability and ex...
Models of solar fuels devices that are completely electrochemically-mediated and consist of ensemble...
Models of solar fuels devices that are completely electrochemically-mediated and consist of ensemble...
Theoretical limiting efficiencies have a critical role in determining technological viability and ex...
World energy consumption is rising fast due to the increasing world urbanization and industrializati...