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January 15, 2019ChemSusChem46 citationsOpen Access

Kinetic Competition between Water‐Splitting and Photocorrosion Reactions in Photoelectrochemical Devices

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FNFredy NandjouSHSophia Haussener

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Abstract

Semiconductor photocorrosion is a major challenge for the stability of photoelectrochemical water-splitting devices. Usually, photocorrosion is studied on the basis of thermodynamic aspects, by comparing the redox potentials of water to the self-decomposition potentials of the semiconductor or analyzing the equilibrium phases at given electrolyte conditions. However, that approach does not allow for a prediction of the decomposition rate of the semiconductor or the branching ratio with the redox reaction. A kinetic model has been developed to describe detailed reaction mechanisms and investigate competition between water-splitting and photocorrosion reactions. It is observed that some thermodynamically unstable semiconductors should photocorrode in a few minutes, whereas others are expected to operate over a period of years as a result of their extremely low photocorrosion current. The photostability of the semiconductor is mainly found to depend on surface chemical properties, catalyst activity, charge carrier density, and electrolyte acidity.

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Cite This Study

Nandjou et al. (2019) studied this question.

synapsesocial.com/papers/6a618baddcbd73a1130a6cb6https://doi.org/10.1002/cssc.201802558
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