Tuning Range-Separated Density Functional Theory for Photocatalytic Water Splitting Systems
Abstract
We discuss the system-specific optimization of long-range separated density functional theory (DFT) for the prediction of electronic properties relevant for a photocatalytic cycle based on an Ir(III) photosensitizer (IrPS). Special attention is paid to the charge-transfer properties, which are of key importance for the photoexcitation dynamics, but and cannot be correctly described by means of conventional DFT. The optimization of the range-separation parameter using the SCF method is discussed for IrPS including its derivatives and complexes with electron donors and acceptors used in photocatalytic hydrogen production. Particular attention is paid to the problems arising for a description of medium effects by means of a polarizable continuum model.
Keywords
Cite
@article{arxiv.1501.05863,
title = {Tuning Range-Separated Density Functional Theory for Photocatalytic Water Splitting Systems},
author = {Olga S. Bokareva and Gilbert Grell and Sergey I. Bokarev and Oliver Kühn},
journal= {arXiv preprint arXiv:1501.05863},
year = {2015}
}
Comments
slightly revised version