This review summarizes recent developments, challenges, and strategies in the field of modeling and simulations of photoelectrochemical (PEC) water oxidation. We focus on water splitting by metal-oxide semiconductors and discuss topics such as theoretical calculations of light absorption, band gap/band edge, charge transport, and electrochemical reactions at the electrode–electrolyte interface. In particular, we review the mechanisms of the oxygen evolution reaction, strategies to lower overpotential, and computational methods applied to PEC systems with particular focus on multiscale modeling. The current challenges in modeling PEC interfaces and their processes are summarized. At the end, we propose a new multiscale modeling approach to s...
A physical model is presented for the semiconductor electrode of a photoelectrochemical cell. The mo...
Photoelectrochemical (PEC) water splitting devices using semiconductors and electrocatalysts rely on...
Photoelectrochemistry is truly an interdisciplinary field; a natural nexus between chemistry and phy...
This review summarizes recent developments, challenges, and strategies in the field of modeling and ...
The oxygen evolution reaction (OER) has been identified as one of the performance-limiting processes...
AbstractA dynamic phenomenological model is proposed for better understanding the underlying mechani...
A physical model is presented for the semiconductor electrode of a photoelectrochemical cell. The mo...
A computational model of a photoelectrochemical cell describing the influence of competing surface r...
A physical model is presented for the semiconductor electrode of a photoelectrochemical (PEC) cell, ...
A physical model is presented for the semiconductor electrode of a photoelectrochemical cell. The mo...
A physical model is presented for the semiconductor electrode of a photoelectrochemical cell. The mo...
A phenomenological model is proposed for a better understanding of the basic mechanismsof photoelect...
Photoelectrochemical water splitting is a promising source of clean, renewable fuel in the form of h...
A phenomenological model is proposed for a better understanding of the basic mechanisms of photoelec...
12 ABSTRACT: A physical model is presented for the semiconductor electrode 13 of a photoelectrochemi...
A physical model is presented for the semiconductor electrode of a photoelectrochemical cell. The mo...
Photoelectrochemical (PEC) water splitting devices using semiconductors and electrocatalysts rely on...
Photoelectrochemistry is truly an interdisciplinary field; a natural nexus between chemistry and phy...
This review summarizes recent developments, challenges, and strategies in the field of modeling and ...
The oxygen evolution reaction (OER) has been identified as one of the performance-limiting processes...
AbstractA dynamic phenomenological model is proposed for better understanding the underlying mechani...
A physical model is presented for the semiconductor electrode of a photoelectrochemical cell. The mo...
A computational model of a photoelectrochemical cell describing the influence of competing surface r...
A physical model is presented for the semiconductor electrode of a photoelectrochemical (PEC) cell, ...
A physical model is presented for the semiconductor electrode of a photoelectrochemical cell. The mo...
A physical model is presented for the semiconductor electrode of a photoelectrochemical cell. The mo...
A phenomenological model is proposed for a better understanding of the basic mechanismsof photoelect...
Photoelectrochemical water splitting is a promising source of clean, renewable fuel in the form of h...
A phenomenological model is proposed for a better understanding of the basic mechanisms of photoelec...
12 ABSTRACT: A physical model is presented for the semiconductor electrode 13 of a photoelectrochemi...
A physical model is presented for the semiconductor electrode of a photoelectrochemical cell. The mo...
Photoelectrochemical (PEC) water splitting devices using semiconductors and electrocatalysts rely on...
Photoelectrochemistry is truly an interdisciplinary field; a natural nexus between chemistry and phy...